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palmitic acid and Disease Models, Animal

palmitic acid has been researched along with Disease Models, Animal in 146 studies

Palmitic Acid: A common saturated fatty acid found in fats and waxes including olive oil, palm oil, and body lipids.
hexadecanoic acid : A straight-chain, sixteen-carbon, saturated long-chain fatty acid.

Disease Models, Animal: Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases.

Research Excerpts

ExcerptRelevanceReference
"Carnosol (CAR) is a kind of diterpenoid with antioxidant, anti-inflammatory and antitumor activities."5.62Carnosol alleviates nonalcoholic fatty liver disease by inhibiting mitochondrial dysfunction and apoptosis through targeting of PRDX3. ( Geng, Y; Hu, Y; Kang, X; Sun, R; Sun, Y; Tian, X; Wang, Y; Wang, Z; Yao, J; Zhao, H; Zhao, Y; Zhu, M, 2021)
"Obesity is closely associated with neuroinflammation in the hypothalamus, which is characterized by over-activated microglia and excessive production of pro-inflammatory cytokines."5.51Green Tea Polyphenol (-)-Epigallocatechin Gallate (EGCG) Attenuates Neuroinflammation in Palmitic Acid-Stimulated BV-2 Microglia and High-Fat Diet-Induced Obese Mice. ( Hochstetter, D; Mao, L; Wang, Y; Xu, P; Yao, L; Zhao, Y; Zhou, J, 2019)
"The development of atherosclerosis is closely related to excessive endoplasmic reticulum stress (ERs)."5.43Equol Attenuates Atherosclerosis in Apolipoprotein E-Deficient Mice by Inhibiting Endoplasmic Reticulum Stress via Activation of Nrf2 in Endothelial Cells. ( Hu, Q; Mi, M; Qin, L; Shi, L; Zhang, Q; Zhang, T, 2016)
"After 4 wk of treatment, alveolar bone loss was determined by micro-computed tomography."5.40Simvastatin inhibits LPS-induced alveolar bone loss during metabolic syndrome. ( Huang, Y; Jin, J; Kirkwood, KL; Li, Y; Lopes-Virella, MF; Lu, Z; Machado, ER; Yu, H; Zhang, X, 2014)
"Tectorigenin is a plant isoflavonoid originally isolated from the dried flower of Pueraria thomsonii Benth."5.39Tectorigenin Attenuates Palmitate-Induced Endothelial Insulin Resistance via Targeting ROS-Associated Inflammation and IRS-1 Pathway. ( Cheng, XL; Gao, XJ; Liu, BL; Liu, K; Qin, MJ; Qin, XY; Qin, Y; Wang, Q; Xie, GY; Zhang, DY; Zhou, L, 2013)
"To investigate whether ezetimibe ameliorates hepatic steatosis and induces autophagy in a rat model of obesity and type 2 diabetes."3.81Ezetimibe improves hepatic steatosis in relation to autophagy in obese and diabetic rats. ( Chang, E; Kim, L; Lee, WY; Oh, KW; Park, CY; Park, SE; Park, SW; Rhee, EJ, 2015)
"The degree of colitis caused by administration of DSS was significantly attenuated by colonic delivery of SLMs of curcumin."3.75Novel formulation of solid lipid microparticles of curcumin for anti-angiogenic and anti-inflammatory activity for optimization of therapy of inflammatory bowel disease. ( Devi, K; Suresh, S; Yadav, S; Yadav, VR, 2009)
" The purpose of the present study was to evaluate the effects of palmitic acid (PA) on early intestinal adaptation in rats with short bowel syndrome (SBS)."3.74Dietary palmitic acid modulates intestinal re-growth after massive small bowel resection in a rat. ( Bar Yosef, F; Bashenko, Y; Chemodanov, E; Coran, AG; Hayari, L; Mogilner, J; Shamir, R; Shaoul, R; Sukhotnik, I, 2008)
"The presynaptic protein alpha-synuclein, implicated in Parkinson disease (PD), binds phospholipids and has a role in brain fatty acid (FA) metabolism."3.73Mitochondrial lipid abnormality and electron transport chain impairment in mice lacking alpha-synuclein. ( Barceló-Coblijn, GC; Ellis, CE; Golovko, MY; Mitchell, DC; Murphy, EJ; Nussbaum, RL; Scaglia, F, 2005)
"Non-alcoholic fatty liver disease (NAFLD) is the primary chronic liver disease worldwide, mainly manifested by hepatic steatosis."1.91The Different Mechanisms of Lipid Accumulation in Hepatocytes Induced by Oleic Acid/Palmitic Acid and High-Fat Diet. ( Bai, X; Chen, L; Chen, Z; Dong, K; Du, Q; Wang, D; Xu, J; Yang, J; Zhang, M, 2023)
"Obesity is a major contributing factor for metabolic-associated fatty liver disease (MAFLD)."1.91FGF1 ameliorates obesity-associated hepatic steatosis by reversing IGFBP2 hypermethylation. ( Chen, C; Gao, D; Li, X; Wang, J; Yang, L; Yang, W; Yu, C; Zhang, F; Zhang, JS, 2023)
"We compared the GAN (Gubra-Amylin nonalcoholic steatohepatitis) diet, which has been used in recent years to induce fatty liver in mice, and the high-fat diet (HFD)."1.62Establishment of an Adult Medaka Fatty Liver Model by Administration of a Gubra-Amylin-Nonalcoholic Steatohepatitis Diet Containing High Levels of Palmitic Acid and Fructose. ( Fujisawa, K; Kondo, K; Matsumoto, T; Nishimura, Y; Okubo, S; Sakaida, I; Takami, T; Yamada, Y; Yamamoto, N, 2021)
"Carnosol (CAR) is a kind of diterpenoid with antioxidant, anti-inflammatory and antitumor activities."1.62Carnosol alleviates nonalcoholic fatty liver disease by inhibiting mitochondrial dysfunction and apoptosis through targeting of PRDX3. ( Geng, Y; Hu, Y; Kang, X; Sun, R; Sun, Y; Tian, X; Wang, Y; Wang, Z; Yao, J; Zhao, H; Zhao, Y; Zhu, M, 2021)
"Renal fibrosis is a potent predictor of progression in patients and is often accompanied by inflammation and oxidative stress; however, the mechanisms involved in these alterations are not well established."1.62Role of endoplasmic reticulum stress in renal damage after myocardial infarction. ( Cachofeiro, V; de la Fuente-Chávez, L; Delgado-Valero, B; Islas, F; Luaces, M; Martínez-Martínez, E; Ramchandani, B; Romero-Miranda, A; Visitación Bartolomé, M, 2021)
"Palmitic acid was used to stimulate cardiomyocytes to establish a myocardial lipotoxicity model."1.62Ophiopogonin D alleviates diabetic myocardial injuries by regulating mitochondrial dynamics. ( Chen, H; Guo, W; Ji, L; Li, W; Lu, R; Shan, X; Tang, W; Tian, J; Xu, M; Zhang, C; Zhao, P, 2021)
"Non-alcoholic fatty liver disease (NAFLD), an emerging risk factor for diabetes, is now recognized as the most common liver disease worldwide."1.62Mesenchymal stem cell-conditioned medium improved mitochondrial function and alleviated inflammation and apoptosis in non-alcoholic fatty liver disease by regulating SIRT1. ( Chen, L; Cui, C; Cui, Y; Guo, X; He, Q; Hu, H; Liang, K; Sha, S; Song, J; Sun, L; Wang, C; Wang, L; Yang, M; Zang, N, 2021)
"Obesity has been recognized as a major risk factor for the development of chronic cardiomyopathy, which is associated with increased cardiac inflammation, fibrosis, and apoptosis."1.62Curcumin analogue C66 attenuates obesity-induced myocardial injury by inhibiting JNK-mediated inflammation. ( Chattipakorn, N; Chen, X; Feng, J; Guan, X; Jin, L; Liang, G; Luo, W; Pavlov, VN; Samorodov, AV; Wang, M; Wang, Y; Yang, D; Ye, L; Zhuang, Z, 2021)
"Arachidonic acid (AA) plays a fundamental role in the function of all cells."1.56Arachidonic acid inhibits inflammatory responses by binding to myeloid differentiation factor-2 (MD2) and preventing MD2/toll-like receptor 4 signaling activation. ( Cai, Y; Chen, H; Khan, ZA; Liang, G; Liu, H; Shan, P; Wu, D; Zhang, B; Zhang, W; Zhang, Y, 2020)
" The dosage of 0."1.56Expression of Notch family is altered in non‑alcoholic fatty liver disease. ( Chen, HB; Chen, YW; Ding, WJ; Fan, JG; Qiao, L; Wu, WJ, 2020)
"Human stem cell therapy for type 2 diabetes/obesity (T2D/O) complications is performedwith stem cell autografts, exposed to the noxious T2D/O milieu, often with suboptimal results."1.56Evaluation of the In Vitro Damage Caused by Lipid Factors on Stem Cells from a Female Rat Model of Type 2 Diabetes/Obesity and Stress Urinary Incontinence. ( Cooper, C; DeCastro, WB; Gelfand, R; Gonzalez-Cadavid, NF; Kovanecz, I; Lin, G; Lue, T; Ohanian, A; Sharifzad, S, 2020)
"Obesity is closely associated with neuroinflammation in the hypothalamus, which is characterized by over-activated microglia and excessive production of pro-inflammatory cytokines."1.51Green Tea Polyphenol (-)-Epigallocatechin Gallate (EGCG) Attenuates Neuroinflammation in Palmitic Acid-Stimulated BV-2 Microglia and High-Fat Diet-Induced Obese Mice. ( Hochstetter, D; Mao, L; Wang, Y; Xu, P; Yao, L; Zhao, Y; Zhou, J, 2019)
"Insulin resistance was induced by palmitic acid (PA) in human HK-2 cells, shown as the decrease of insulin-stimulated AKT phosphorylation, glucose transporter-4 (GLUT4), glucose uptake and enhanced phosphorylation of insulin receptor substrate 1(IRS-1) at site serine 307 (pIRS-1ser307) and downregulated expression of IRS-1."1.48Inhibition of insulin resistance by PGE1 via autophagy-dependent FGF21 pathway in diabetic nephropathy. ( An, XR; Jin, SJ; Li, XX; Wei, W; Xu, M, 2018)
"Treatment with palmitic acid (PA) or HFD significantly increased the expression of miR-33a in hepatocytes or liver tissues."1.48Hepatocyte miR-33a mediates mitochondrial dysfunction and hepatosteatosis by suppressing NDUFA5. ( Chen, Z; Dai, X; He, H; Huang, H; Li, Q; Nie, H; Ren, T; Song, C; Wang, D; Yu, X; Zhou, L; Zhou, Y, 2018)
"CQJD ameliorates mouse nonalcoholic steatohepatitis."1.48Cangju Qinggan Jiangzhi Decoction Reduces the Development of NonAlcoholic Steatohepatitis and Activation of Kupffer Cells. ( Chen, J; Chen, T; Cheng, Y; Ping, J, 2018)
"Obesity is believed to negatively affect male semen quality and is accompanied by dysregulation of free fatty acid (FFA) metabolism in plasma."1.48Effects of saturated palmitic acid and omega-3 polyunsaturated fatty acids on Sertoli cell apoptosis. ( Ge, X; Hu, X; Jing, J; Liang, W; Shao, Y; Wang, C; Yao, B; Zeng, R, 2018)
"Non-alcoholic fatty liver disease (NAFLD) has been considered as a multi-factorial metabolic syndrome."1.48Down-regulation of microRNA-375 regulates adipokines and inhibits inflammatory cytokines by targeting AdipoR2 in non-alcoholic fatty liver disease. ( Lei, L; Li, L; Yang, X; Zhou, C, 2018)
"Palmitic acid treatment caused mitochondrial damage and leakage of mitochondrial DNA into the cytosol."1.46STING-IRF3 Triggers Endothelial Inflammation in Response to Free Fatty Acid-Induced Mitochondrial Damage in Diet-Induced Obesity. ( Abe, JI; Fujiwara, K; LeMaire, SA; Luo, W; Mao, Y; Shen, YH; Song, J; Wang, XL; Wu, W; Xu, H; Yuan, L; Zhang, L, 2017)
"The development of atherosclerosis is closely related to excessive endoplasmic reticulum stress (ERs)."1.43Equol Attenuates Atherosclerosis in Apolipoprotein E-Deficient Mice by Inhibiting Endoplasmic Reticulum Stress via Activation of Nrf2 in Endothelial Cells. ( Hu, Q; Mi, M; Qin, L; Shi, L; Zhang, Q; Zhang, T, 2016)
"Obvious obese feathers associated with type 2 diabetes were observed in HFD feeding mice, with decreased circulating irisin level and FNDC5/irisin secretion in adipose tissues."1.42Decreased irisin secretion contributes to muscle insulin resistance in high-fat diet mice. ( Chen, X; Chen, Y; Yang, Z; Zhao, Q, 2015)
"The etiopathogenesis of sporadic Parkinson's disease (PD) remains elusive although mitochondrial dysfunction has long been implicated."1.42PGC-1α Promoter Methylation in Parkinson's Disease. ( Cao, H; Chu, Y; Federoff, HJ; Huang, L; Kordower, JH; Li, B; Nishida, M; Song, L; Su, X; Wang, D, 2015)
"After 4 wk of treatment, alveolar bone loss was determined by micro-computed tomography."1.40Simvastatin inhibits LPS-induced alveolar bone loss during metabolic syndrome. ( Huang, Y; Jin, J; Kirkwood, KL; Li, Y; Lopes-Virella, MF; Lu, Z; Machado, ER; Yu, H; Zhang, X, 2014)
"Dronedarone is an amiodarone-like antiarrhythmic drug associated with severe liver injury."1.40Hepatic toxicity of dronedarone in mice: role of mitochondrial β-oxidation. ( Bouitbir, J; Donzelli, M; Felser, A; Krähenbühl, S; Morand, R; Schnell, D; Stoller, A; Terracciano, L, 2014)
"Non-alcoholic fatty liver disease (NAFLD) is strongly associated with obesity and type 2 diabetes."1.40Thioredoxin-interacting protein mediates hepatic lipogenesis and inflammation via PRMT1 and PGC-1α regulation in vitro and in vivo. ( Choi, IP; Choi, JH; Han, HJ; Kim, DI; Kim, HC; Kim, JC; Lee, JB; Lee, JH; Lim, SK; Park, MJ; Park, SH; Yoon, KC, 2014)
"Globoid cell leukodystrophy or Krabbe disease is an inherited autosomal recessive disorder caused by mutations in the galactosylceramidase gene."1.40GC-EI-MS analysis of fatty acid composition in brain and serum of twitcher mouse. ( Berardi, A; Costantino-Ceccarini, E; Dreassi, E; Luddi, A; Piomboni, P; Zanfini, A, 2014)
" The vesicles were characterized for physicochemical properties, ex vivo permeation using human skin and pharmacokinetic parameters and anti-inflammatory activity in rats."1.40Ceramide-2 nanovesicles for effective transdermal delivery: development, characterization and pharmacokinetic evaluation. ( Bhandari, A; Gaur, PK; Kumar, Y; Mishra, S; Purohit, S, 2014)
"Non-alcoholic fatty liver disease (NAFLD) is one of the most prevalent, chronic liver diseases, worldwide."1.39EZH2 down-regulation exacerbates lipid accumulation and inflammation in in vitro and in vivo NAFLD. ( Alisi, A; Ceccarelli, S; Crudele, A; De Stefanis, C; Gaspari, S; Gnani, D; Locatelli, F; Marquez, VE; Nobili, V; Rota, R; Vella, S, 2013)
"Tectorigenin is a plant isoflavonoid originally isolated from the dried flower of Pueraria thomsonii Benth."1.39Tectorigenin Attenuates Palmitate-Induced Endothelial Insulin Resistance via Targeting ROS-Associated Inflammation and IRS-1 Pathway. ( Cheng, XL; Gao, XJ; Liu, BL; Liu, K; Qin, MJ; Qin, XY; Qin, Y; Wang, Q; Xie, GY; Zhang, DY; Zhou, L, 2013)
"It is commonly used for the treatment of depression-related syndromes in China."1.38Identification and quantification of the major volatile constituents in antidepressant active fraction of xiaoyaosan by gas chromatography-mass spectrometry. ( Gao, X; Jia, G; Ma, Z; Qin, X; Ren, Y; Zhang, L; Zhou, Y, 2012)
"Nonalcoholic steatohepatitis (NASH) is associated with obesity and type 2 diabetes, and an increased risk for liver cirrhosis and cancer."1.38Elovl6 promotes nonalcoholic steatohepatitis. ( Atsumi, A; Ishii, K; Kobayashi, K; Kuba, M; Matsumori, R; Matsuzaka, T; Murata, S; Nakagawa, Y; Nakamuta, M; Nie, T; Shimada, M; Shimano, H; Shinozaki, H; Sone, H; Suzuki, H; Suzuki-Kemuriyama, N; Takahashi, A; Takekoshi, K; Yahagi, N; Yamada, N; Yatoh, S, 2012)
"Obesity is associated with insulin resistance in the peripheral vasculature and is an important risk factor for coronary artery disease."1.37Preserved insulin vasorelaxation and up-regulation of the Akt/eNOS pathway in coronary arteries from insulin resistant obese Zucker rats. ( Andriantsitohaina, R; Contreras, C; García-Sacristán, A; Martínez, MC; Prieto, D; Sánchez, A, 2011)
"and results Left ventricular hypertrophy was induced surgically in Sprague-Dawley rats by inter-renal aortic constriction."1.35Western diet impairs metabolic remodelling and contractile efficiency in cardiac hypertrophy. ( Akki, A; Seymour, AM, 2009)
"Diazoxide (DZ) was used to decrease serum insulin and generate hyperglycemia."1.35Endothelial heparanase secretion after acute hypoinsulinemia is regulated by glucose and fatty acid. ( Abrahani, A; Deppe, S; Ghosh, S; Kewalramani, G; Kim, MS; Puthanveetil, P; Rodrigues, B; Wang, F, 2009)
"In a murine model of thrombus formation, inhibition of protein palmitoylation markedly inhibits platelet accumulation into thrombi at sites of vascular injury."1.34Platelets possess and require an active protein palmitoylation pathway for agonist-mediated activation and in vivo thrombus formation. ( Dilks, JR; Flaumenhaft, R; Sim, DS, 2007)

Research

Studies (146)

TimeframeStudies, this research(%)All Research%
pre-19903 (2.05)18.7374
1990's7 (4.79)18.2507
2000's22 (15.07)29.6817
2010's83 (56.85)24.3611
2020's31 (21.23)2.80

Authors

AuthorsStudies
Sulsky, R1
Magnin, DR1
Huang, Y4
Simpkins, L1
Taunk, P1
Patel, M1
Zhu, Y1
Stouch, TR1
Bassolino-Klimas, D1
Parker, R1
Harrity, T1
Stoffel, R1
Taylor, DS1
Lavoie, TB1
Kish, K1
Jacobson, BL1
Sheriff, S1
Adam, LP1
Ewing, WR1
Robl, JA1
Cioffi, CL1
Racz, B1
Varadi, A1
Freeman, EE1
Conlon, MP1
Chen, P1
Zhu, L1
Kitchen, DB1
Barnes, KD1
Martin, WH1
Pearson, PG1
Johnson, G1
Blaner, WS1
Petrukhin, K1
Abrams, RPM1
Yasgar, A1
Teramoto, T1
Lee, MH1
Dorjsuren, D1
Eastman, RT1
Malik, N1
Zakharov, AV1
Li, W3
Bachani, M1
Brimacombe, K1
Steiner, JP1
Hall, MD1
Balasubramanian, A1
Jadhav, A1
Padmanabhan, R1
Simeonov, A1
Nath, A1
Ye, L1
Chen, X2
Wang, M2
Jin, L1
Zhuang, Z1
Yang, D1
Guan, X1
Samorodov, AV1
Pavlov, VN1
Chattipakorn, N1
Feng, J1
Wang, Y7
Luo, W2
Liang, G2
Fujisawa, K1
Takami, T1
Okubo, S1
Nishimura, Y2
Yamada, Y1
Kondo, K1
Matsumoto, T1
Yamamoto, N1
Sakaida, I1
Zhang, W3
You, B1
Qi, D1
Qiu, L1
Ripley-Gonzalez, JW1
Zheng, F1
Fu, S1
Li, C2
Dun, Y1
Liu, S2
Geng, Y1
Sun, R1
Kang, X1
Zhao, H1
Zhu, M1
Sun, Y2
Hu, Y1
Wang, Z4
Tian, X1
Zhao, Y2
Yao, J2
Shi, W1
Deng, Y1
Zhao, C1
Xiao, W1
Xiong, Z1
Zhao, L1
Wang, J3
Zhang, F1
Yang, W1
Gao, D1
Yang, L1
Yu, C2
Chen, C2
Li, X1
Zhang, JS1
Zhang, M1
Bai, X1
Du, Q1
Xu, J1
Wang, D3
Chen, L4
Dong, K1
Chen, Z2
Yang, J1
Upadhyay, KK1
Jadeja, RN1
Vyas, HS1
Pandya, B1
Joshi, A1
Vohra, A1
Thounaojam, MC1
Martin, PM1
Bartoli, M1
Devkar, RV1
Fatima, S2
Hu, X3
Huang, C2
Cai, J1
Huang, M1
Gong, RH2
Chen, M2
Ho, AHM1
Su, T3
Wong, HLX2
Bian, Z2
Kwan, HY3
Li, CX1
Gao, JG1
Wan, XY1
Chen, Y5
Xu, CF1
Feng, ZM1
Zeng, H1
Lin, YM1
Ma, H1
Xu, P2
Yu, CH1
Li, YM1
Mao, L1
Hochstetter, D1
Yao, L1
Zhou, J1
Marei, WFA1
Van den Bosch, L1
Pintelon, I1
Mohey-Elsaeed, O1
Bols, PEJ1
Leroy, JLMR1
Ghezzal, S1
Postal, BG1
Quevrain, E1
Brot, L1
Seksik, P1
Leturque, A1
Thenet, S1
Carrière, V1
Xie, T1
So, WY1
Li, XY1
Leung, PS1
Sui, M1
Chen, G2
Mao, X1
Wei, X1
Liu, C2
Fan, Y1
Peleli, M1
Ferreira, DMS1
Tarnawski, L1
McCann Haworth, S1
Xuechen, L1
Zhuge, Z1
Newton, PT1
Massart, J1
Chagin, AS1
Olofsson, PS1
Ruas, JL1
Weitzberg, E1
Lundberg, JO1
Carlström, M1
Niu, X2
Du, Y1
Liu, X1
Xu, L1
Iwakura, Y1
Ma, X1
Li, Y4
Yao, Z1
Deng, W1
Park, BS1
Tu, TH1
Lee, H2
Jeong, DY1
Yang, S1
Lee, BJ2
Kim, JG1
Cai, BB1
Lu, YN1
Xu, M3
Zhang, Y1
Chen, H3
Cai, Y1
Shan, P1
Wu, D1
Zhang, B1
Liu, H1
Khan, ZA1
Xiao, Y2
Mo, W1
Jia, H1
Yu, D1
Qiu, Y1
Jiao, Y1
Zhu, W1
Koide, H1
Cao, J1
Zhang, S2
Wu, X1
Poulsen, KL1
Sanz-Garcia, C1
Huang, E1
McMullen, MR1
Roychowdhury, S1
Dasarathy, S1
Nagy, LE1
Zhou, Y3
Zhong, L1
Yu, S1
Shen, W1
Cai, C1
Yu, H4
Pan, X1
Fan, Z1
Bai, F1
Wei, Y1
Tian, Z1
Dong, Y1
Shi, J1
Jin, Y1
Cheng, Z1
Jin, S1
Lin, J1
Wu, W2
Zhou, K1
Chen, SC1
Yang, F1
van der Veen, S2
Yin, YP1
Ding, WJ1
Wu, WJ1
Chen, YW1
Chen, HB1
Fan, JG2
Qiao, L1
Kovanecz, I1
Gelfand, R1
Sharifzad, S1
Ohanian, A1
DeCastro, WB1
Cooper, C1
Lin, G1
Lue, T1
Gonzalez-Cadavid, NF1
Gao, L2
Wu, MX1
Wang, SH1
Xie, Y1
Chen, ZT1
Guo, Q1
Yuan, WL1
Guan, C1
Xu, CZ1
Huang, YN1
Wang, JF1
Zhang, HF1
Chen, YX1
Delgado-Valero, B1
de la Fuente-Chávez, L1
Romero-Miranda, A1
Visitación Bartolomé, M1
Ramchandani, B1
Islas, F1
Luaces, M1
Cachofeiro, V1
Martínez-Martínez, E1
Prasath, KG1
Alexpandi, R1
Parasuraman, R1
Pavithra, M1
Ravi, AV1
Pandian, SK1
Ji, L1
Tian, J1
Tang, W1
Shan, X1
Zhao, P1
Zhang, C1
Lu, R1
Guo, W1
Yang, M1
Cui, Y1
Song, J2
Cui, C1
Wang, L2
Liang, K1
Wang, C2
Sha, S1
He, Q1
Hu, H1
Guo, X1
Zang, N1
Sun, L1
Choi, HE1
Kim, Y1
Lee, HJ2
Cheon, HG2
Reyes, AWB1
Huy, TXN1
Vu, SH1
Kim, HJ1
Lee, JJ1
Choi, JS1
Lee, JH2
Kim, S2
Ali, ES1
Girard, D1
Petrovsky, N1
Xu, K1
Sekar, S1
Shafie, SR1
Prasadam, I1
Crawford, R1
Panchal, SK1
Brown, L1
Jin, CL1
Wu, YN1
Jang, JH1
Zhao, ZH2
Oh, GT1
Kim, SJ1
Zhang, YH1
Hsiao, PJ1
Chiou, HC1
Jiang, HJ1
Lee, MY1
Hsieh, TJ1
Kuo, KK1
Guo, H1
Wang, B1
Li, H1
Ling, L1
Niu, J1
Gu, Y1
Cao, Y1
Sun, H1
Li, M1
You, H1
Su, D1
Liang, X1
Liu, XL1
Cao, HX1
Wang, BC1
Xin, FZ1
Zhang, RN1
Zhou, D1
Yang, RX1
Pan, Q1
Wei, W1
An, XR1
Jin, SJ1
Li, XX1
Iverson, C1
Bacong, A1
Baumgartner, S1
Lundström, T1
Oscarsson, J1
Miner, JN1
Lei, L1
Zhou, C1
Yang, X1
Li, L2
Cha, SH1
Hwang, Y1
Kim, KN1
Jun, HS1
Ge, X1
Liang, W1
Shao, Y1
Jing, J1
Zeng, R1
Yao, B1
Cheng, Y1
Chen, T1
Ping, J1
Chen, J1
Li, LC1
Yang, JL1
Lee, WC1
Chen, JB1
Lee, CT1
Wang, PW1
Vaghese, Z1
Chen, WY1
Nie, H1
Yu, X1
He, H1
Zhou, L2
Li, Q1
Song, C1
Ren, T1
Huang, H2
Dai, X1
Mai, CT1
Wu, MM1
Wang, CL1
Su, ZR1
Cheng, YY1
Zhang, XJ1
Kubo, T1
Hatori, Y1
Akagi, R1
Mihara, K1
Yanagihara, K1
Seyama, T1
Liao, CY1
Song, MJ1
Gao, Y1
Mauer, AS1
Revzin, A1
Malhi, H1
Luo, Y1
Wu, MY1
Deng, BQ1
Huang, J2
Hwang, SH1
Li, MY1
Zhou, CY1
Zhang, QY1
Yu, HB1
Zhao, DK1
Zhang, G1
Qin, L2
Peng, A1
Hammock, BD1
Liu, JY1
Su, S1
Rasquinha, G1
Du, L1
Wang, Q3
Xu, W1
Lu, L1
Jiang, S1
Wang, X2
Jiang, X1
Deng, B1
Xiao, J1
Jin, J2
Huang, Z1
Gaur, PK1
Purohit, S1
Kumar, Y1
Mishra, S1
Bhandari, A1
Cheng, XL1
Zhang, DY1
Gao, XJ1
Qin, XY1
Xie, GY1
Liu, K1
Qin, Y1
Liu, BL1
Qin, MJ1
Wu, H2
Chen, S2
Gu, L1
Ding, Z1
Guo, J1
Wan, J1
Savas, JN1
Roth, AF1
Sanders, SS1
Singaraja, RR1
Hayden, MR1
Yates, JR1
Davis, NG1
Vella, S1
Gnani, D1
Crudele, A1
Ceccarelli, S1
De Stefanis, C1
Gaspari, S1
Nobili, V1
Locatelli, F1
Marquez, VE1
Rota, R1
Alisi, A1
Machado, ER1
Zhang, X2
Lu, Z2
Lopes-Virella, MF2
Kirkwood, KL2
Tu, QQ1
Zheng, RY1
Li, J2
Hu, L1
Chang, YX1
Li, MH1
Wang, RY1
Huang, DD1
Wu, MC1
Hu, HP1
Wang, HY1
Felser, A1
Stoller, A1
Morand, R1
Schnell, D1
Donzelli, M1
Terracciano, L1
Bouitbir, J1
Krähenbühl, S1
Park, MJ1
Kim, DI1
Lim, SK1
Choi, JH1
Kim, JC1
Yoon, KC1
Lee, JB1
Han, HJ1
Choi, IP1
Kim, HC1
Park, SH1
Galloway, CA1
Brookes, PS1
Yoon, Y1
Trnovská, J1
Šilhavý, J1
Zídek, V1
Šimáková, M1
Mlejnek, P1
Landa, V1
Eigner, S1
Eigner Henke, K1
Škop, V1
Oliyarnyk, O1
Kazdová, L1
Mráček, T1
Houštěk, J1
Pravenec, M1
Zanfini, A1
Dreassi, E1
Berardi, A1
Piomboni, P1
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Luddi, A1
Shao, XH1
Song, GY1
Zhao, ZY1
Teng, SY1
Wu, YJ1
Xu, R1
Wang, P1
Edin, ML1
Zeldin, DC1
Wang, DW1
Seeßle, J1
Liebisch, G1
Schmitz, G1
Stremmel, W1
Chamulitrat, W1
Díaz-Ruiz, A1
Guzmán-Ruiz, R1
Moreno, NR1
García-Rios, A1
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Membrives, A1
Túnez, I1
El Bekay, R1
Fernández-Real, JM1
Tovar, S1
Diéguez, C1
Tinahones, FJ1
Vázquez-Martínez, R1
López-Miranda, J1
Malagón, MM1
Dai, W1
Tong, T1
Chao, X1
Chan, CL1
Lee, KC1
Fu, X1
Yi, H1
Li, T1
Tse, AK1
Fong, WF1
Pan, SY1
Lu, A1
Yu, ZL1
Shikama, Y1
Kudo, Y1
Ishimaru, N1
Funaki, M1
Morselli, E1
Frank, AP1
Palmer, BF1
Rodriguez-Navas, C1
Criollo, A1
Clegg, DJ1
Chang, E1
Kim, L1
Park, SE1
Rhee, EJ1
Lee, WY1
Oh, KW1
Park, SW1
Park, CY1
Afonso, MB1
Rodrigues, PM1
Carvalho, T1
Caridade, M1
Borralho, P1
Cortez-Pinto, H1
Castro, RE1
Rodrigues, CM1
Yang, Z1
Zhao, Q1
Su, X1
Chu, Y1
Kordower, JH1
Li, B1
Cao, H1
Huang, L1
Nishida, M1
Song, L1
Federoff, HJ1
Jung, TW1
Hong, HC1
Hwang, HJ1
Yoo, HJ1
Baik, SH1
Choi, KM1
Martínez, L1
Torres, S1
Baulies, A1
Alarcón-Vila, C1
Elena, M1
Fabriàs, G1
Casas, J1
Caballeria, J1
Fernandez-Checa, JC1
García-Ruiz, C1
Yeon, JE1
Ko, EJ1
Yoon, EL1
Suh, SJ1
Kang, K1
Kim, HR1
Kang, SH1
Yoo, YJ1
Je, J1
Kim, JH1
Seo, YS1
Yim, HJ1
Byun, KS1
Lin, Y1
Luo, R1
Wang, F2
Zheng, P1
Levi, M1
Yang, T1
Wang, W1
Alsahli, A1
Kiefhaber, K1
Gold, T1
Muluke, M1
Jiang, H1
Cremers, S1
Schulze-Späte, U1
Ye, J1
Liu, P1
Sui, YH1
Luo, WJ1
Xu, QY1
Hua, J1
Reddy, MA1
Das, S1
Zhuo, C1
Jin, W1
Lanting, L1
Natarajan, R1
Talukder, MA1
Preda, M1
Ryzhova, L1
Prudovsky, I1
Pinz, IM1
Bashiri, A1
Nesan, D1
Tavallaee, G1
Sue-Chue-Lam, I1
Chien, K1
Maguire, GF1
Naples, M1
Zhang, J1
Magomedova, L1
Adeli, K1
Cummins, CL1
Ng, DS1
de Sèze, J1
Kremer, L1
Alves do Rego, C1
Taleb, O1
Lam, D1
Beiano, W1
Mensah-Nyagan, G1
Trifilieff, E1
Brun, S1
Zhang, T1
Hu, Q1
Shi, L1
Zhang, Q1
Mi, M1
Pascual, G1
Avgustinova, A1
Mejetta, S1
Martín, M1
Castellanos, A1
Attolini, CS1
Berenguer, A1
Prats, N1
Toll, A1
Hueto, JA1
Bescós, C1
Di Croce, L1
Benitah, SA1
Lin, L1
Ding, Y1
Yin, X1
Yan, G1
Zhang, L3
Yang, P1
Shen, H1
Mao, Y1
Yuan, L1
Xu, H1
Fujiwara, K1
Abe, JI1
LeMaire, SA1
Wang, XL1
Shen, YH1
O'Donnell, JM2
Fields, A1
Xu, X1
Chowdhury, SA1
Geenen, DL1
Bi, J1
Sukhotnik, I1
Hayari, L1
Bashenko, Y1
Chemodanov, E1
Mogilner, J1
Shamir, R1
Bar Yosef, F1
Shaoul, R1
Coran, AG1
Akki, A1
Seymour, AM1
Kim, MS1
Puthanveetil, P1
Kewalramani, G1
Deppe, S1
Ghosh, S1
Abrahani, A1
Rodrigues, B1
Yadav, VR1
Suresh, S1
Devi, K1
Yadav, S1
Symons, JD1
McMillin, SL1
Riehle, C1
Tanner, J1
Palionyte, M1
Hillas, E1
Jones, D1
Cooksey, RC1
Birnbaum, MJ1
McClain, DA1
Zhang, QJ1
Gale, D1
Wilson, LJ1
Abel, ED1
Chakrabarti, SK1
Cole, BK1
Wen, Y1
Keller, SR1
Nadler, JL1
Iaremenko, LM1
Briuzhina, TS1
Hrabovyĭ, OM1
Omar, MA1
Clanachan, AS1
Rizzo, NO1
Maloney, E1
Pham, M2
Luttrell, I2
Wessells, H1
Tateya, S1
Daum, G1
Handa, P1
Schwartz, MW2
Kim, F2
Cuiffo, B1
Ren, R1
Rector, RS2
Thyfault, JP2
Uptergrove, GM1
Morris, EM1
Naples, SP1
Borengasser, SJ1
Mikus, CR1
Laye, MJ2
Laughlin, MH1
Booth, FW2
Ibdah, JA1
Skierczynska, A1
Beresewicz, A1
Iozzo, P1
Bucci, M1
Roivainen, A1
Någren, K1
Järvisalo, MJ1
Kiss, J1
Guiducci, L1
Fielding, B1
Naum, AG1
Borra, R1
Virtanen, K1
Savunen, T1
Salvadori, PA1
Ferrannini, E1
Knuuti, J1
Nuutila, P1
Holloway, GP2
Snook, LA2
Harris, RJ1
Glatz, JF1
Luiken, JJ1
Bonen, A3
Han, MS1
Lim, YM1
Quan, W1
Kim, JR1
Chung, KW1
Kang, M1
Park, SY2
Han, JS1
Dal Rhee, S1
Park, TS1
Lee, MS1
Contreras, C1
Sánchez, A1
García-Sacristán, A1
Martínez, MC1
Andriantsitohaina, R1
Prieto, D1
Gélinas, R1
Thompson-Legault, J1
Bouchard, B1
Daneault, C1
Mansour, A1
Gillis, MA1
Charron, G1
Gavino, V1
Labarthe, F1
Des Rosiers, C1
Kudej, RK1
Fasano, M2
Zhao, X1
Lopaschuk, GD2
Fischer, SK2
Vatner, DE1
Vatner, SF1
Lewandowski, ED2
Lally, JS1
Han, XX2
Chabowski, A1
Ren, Y1
Ma, Z1
Jia, G1
Gao, X1
Qin, X1
Matsuzaka, T1
Atsumi, A1
Matsumori, R1
Nie, T1
Shinozaki, H1
Suzuki-Kemuriyama, N1
Kuba, M1
Nakagawa, Y1
Ishii, K1
Shimada, M1
Kobayashi, K1
Yatoh, S1
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Yahagi, N1
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Yamada, N1
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Perrard, JL1
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Huqi, A1
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Mirnics, ZK1
Yan, C1
Portugal, C1
Kim, TW1
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Graham, TE1
Ellis, CE1
Murphy, EJ1
Mitchell, DC1
Golovko, MY1
Scaglia, F1
Barceló-Coblijn, GC1
Nussbaum, RL1
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Solevåg, GH1
Severson, DL1
Larsen, TS1
Aasum, E1
Lahiri, R1
Randhawa, B1
Krahenbuhl, JL1
Sim, DS1
Dilks, JR1
Flaumenhaft, R1
Bannerman, DD1
Tupper, J1
Thaler, J1
Hawn, TR1
Raines, EW1
Shah, PK1
Morris, RT1
Lees, SJ1
Donthi, RV1
Lange, AJ1
Watson, LJ1
Jones, SP1
Epstein, PN1
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Yoshida, Y1
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Ayyad, N2
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Miki, S2
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Mikami, Y1
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Clinical Trials (3)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
"Stress and Biomarkers of Aging: a Novel Stress Management Program With the Cognitive Restructuring Method Pythagorean Self-Awareness Intervention in Healthy Individuals and in Subjects With Type 2 Diabetes Mellitus."[NCT04763525]48 participants (Actual)Interventional2018-10-04Completed
Effect of Oral Supplementation With One Form of L-arginine on Vascular Endothelial Function in Healthy Subjects Featuring Risk Factors Related to the Metabolic Syndrome.[NCT02354794]36 participants (Actual)Interventional2014-02-28Completed
Characterization of the Metabolic Fate of an Oral L-arginine Form in Healthy Subjects Featuring Risk Factors Related to the Metabolic Syndrome.[NCT02352740]32 participants (Actual)Interventional2013-03-31Completed
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Reviews

2 reviews available for palmitic acid and Disease Models, Animal

ArticleYear
A sexually dimorphic hypothalamic response to chronic high-fat diet consumption.
    International journal of obesity (2005), 2016, Volume: 40, Issue:2

    Topics: Animals; Diet, High-Fat; Disease Models, Animal; Estrogen Receptor alpha; Female; Hypothalamus; Infl

2016
Chronic inflammatory demyelinating polyradiculoneuropathy: A new animal model for new therapeutic targets.
    Revue neurologique, 2016, Volume: 172, Issue:12

    Topics: Animals; Demyelinating Diseases; Disease Models, Animal; Immunohistochemistry; Motor Neurons; Neural

2016

Other Studies

144 other studies available for palmitic acid and Disease Models, Animal

ArticleYear
Potent and selective biphenyl azole inhibitors of adipocyte fatty acid binding protein (aFABP).
    Bioorganic & medicinal chemistry letters, 2007, Jun-15, Volume: 17, Issue:12

    Topics: Adipocytes; Animals; Azoles; Binding Sites; Biphenyl Compounds; Disease Models, Animal; Epidermis; F

2007
Design, Synthesis, and Preclinical Efficacy of Novel Nonretinoid Antagonists of Retinol-Binding Protein 4 in the Mouse Model of Hepatic Steatosis.
    Journal of medicinal chemistry, 2019, 06-13, Volume: 62, Issue:11

    Topics: Animals; Chemistry Techniques, Synthetic; Disease Models, Animal; Drug Design; Fatty Liver; Male; Mi

2019
Therapeutic candidates for the Zika virus identified by a high-throughput screen for Zika protease inhibitors.
    Proceedings of the National Academy of Sciences of the United States of America, 2020, 12-08, Volume: 117, Issue:49

    Topics: Animals; Antiviral Agents; Artificial Intelligence; Chlorocebus aethiops; Disease Models, Animal; Dr

2020
Curcumin analogue C66 attenuates obesity-induced myocardial injury by inhibiting JNK-mediated inflammation.
    Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie, 2021, Volume: 143

    Topics: Animals; Anti-Inflammatory Agents; Apoptosis; Benzylidene Compounds; Cardiomyopathies; Cell Line; Cy

2021
Establishment of an Adult Medaka Fatty Liver Model by Administration of a Gubra-Amylin-Nonalcoholic Steatohepatitis Diet Containing High Levels of Palmitic Acid and Fructose.
    International journal of molecular sciences, 2021, Sep-14, Volume: 22, Issue:18

    Topics: Animals; Body Weight; Diet, High-Fat; Disease Models, Animal; Female; Fenofibrate; Fructose; Gene Ex

2021
Trimetazidine and exercise provide comparable improvements to high fat diet-induced muscle dysfunction through enhancement of mitochondrial quality control.
    Scientific reports, 2021, 09-27, Volume: 11, Issue:1

    Topics: Animals; Cell Line; Combined Modality Therapy; Diet, High-Fat; Disease Models, Animal; Humans; Lipid

2021
Carnosol alleviates nonalcoholic fatty liver disease by inhibiting mitochondrial dysfunction and apoptosis through targeting of PRDX3.
    Toxicology and applied pharmacology, 2021, 12-01, Volume: 432

    Topics: Abietanes; Animals; Antioxidants; Apoptosis; Cell Line; Diet, High-Fat; Disease Models, Animal; Enzy

2021
Integrative serum metabolomic analysis for preventive effects of Yaobitong capsule in adjuvant-induced rheumatoid arthritis rat based on RP/HILIC-UHPLC-Q-TOF MS.
    Analytical biochemistry, 2022, 01-15, Volume: 637

    Topics: Animals; Arthritis, Rheumatoid; Biomarkers; Chromatography, High Pressure Liquid; Cytokines; Disease

2022
FGF1 ameliorates obesity-associated hepatic steatosis by reversing IGFBP2 hypermethylation.
    FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 2023, Volume: 37, Issue:4

    Topics: Animals; Diet, High-Fat; Disease Models, Animal; Epigenesis, Genetic; Fibroblast Growth Factor 1; In

2023
The Different Mechanisms of Lipid Accumulation in Hepatocytes Induced by Oleic Acid/Palmitic Acid and High-Fat Diet.
    Molecules (Basel, Switzerland), 2023, Sep-20, Volume: 28, Issue:18

    Topics: Animals; CD36 Antigens; Diet, High-Fat; Disease Models, Animal; Fatty Acids, Nonesterified; Hepatocy

2023
Carbon monoxide releasing molecule-A1 improves nonalcoholic steatohepatitis via Nrf2 activation mediated improvement in oxidative stress and mitochondrial function.
    Redox biology, 2020, Volume: 28

    Topics: Animals; Boranes; Carbonates; Cell Survival; Diet, High-Fat; Disease Models, Animal; Gene Expression

2020
High-fat diet feeding and palmitic acid increase CRC growth in β2AR-dependent manner.
    Cell death & disease, 2019, 09-26, Volume: 10, Issue:10

    Topics: Adrenergic beta-Agonists; Animals; Cell Line, Tumor; Cell Proliferation; Colorectal Neoplasms; Compu

2019
Allyl isothiocyanate ameliorates lipid accumulation and inflammation in nonalcoholic fatty liver disease
    World journal of gastroenterology, 2019, Sep-14, Volume: 25, Issue:34

    Topics: AMP-Activated Protein Kinases; Animals; Cell Line; Diet, High-Fat; Disease Models, Animal; Down-Regu

2019
Green Tea Polyphenol (-)-Epigallocatechin Gallate (EGCG) Attenuates Neuroinflammation in Palmitic Acid-Stimulated BV-2 Microglia and High-Fat Diet-Induced Obese Mice.
    International journal of molecular sciences, 2019, Oct-13, Volume: 20, Issue:20

    Topics: Animals; Anti-Obesity Agents; Catechin; Cell Line; Diet, High-Fat; Disease Models, Animal; Hypothala

2019
Mitochondria-targeted therapy rescues development and quality of embryos derived from oocytes matured under oxidative stress conditions: a bovine in vitro model.
    Human reproduction (Oxford, England), 2019, 10-02, Volume: 34, Issue:10

    Topics: Animals; Antioxidants; Cattle; Culture Media; Diabetes Mellitus, Type 2; Disease Models, Animal; Emb

2019
Palmitic acid damages gut epithelium integrity and initiates inflammatory cytokine production.
    Biochimica et biophysica acta. Molecular and cell biology of lipids, 2020, Volume: 1865, Issue:2

    Topics: Administration, Oral; Animals; Caco-2 Cells; Cytokines; Disease Models, Animal; Endoplasmic Reticulu

2020
Fibroblast growth factor 21 protects against lipotoxicity-induced pancreatic β-cell dysfunction via regulation of AMPK signaling and lipid metabolism.
    Clinical science (London, England : 1979), 2019, 10-15, Volume: 133, Issue:19

    Topics: Acetyl-CoA Carboxylase; AMP-Activated Protein Kinases; Animals; Antibodies, Monoclonal, Humanized; A

2019
Gegen Qinlian Decoction Ameliorates Hepatic Insulin Resistance by Silent Information Regulator1 (SIRT1)-Dependent Deacetylation of Forkhead Box O1 (FOXO1).
    Medical science monitor : international medical journal of experimental and clinical research, 2019, Nov-13, Volume: 25

    Topics: Animals; China; Diet, High-Fat; Disease Models, Animal; Drugs, Chinese Herbal; Forkhead Box Protein

2019
Dietary nitrate attenuates high-fat diet-induced obesity via mechanisms involving higher adipocyte respiration and alterations in inflammatory status.
    Redox biology, 2020, Volume: 28

    Topics: Adipocytes; Animals; Blood Glucose; Cell Respiration; Diet, High-Fat; Disease Models, Animal; Gene E

2020
IL-17A promotes fatty acid uptake through the IL-17A/IL-17RA/p-STAT3/FABP4 axis to fuel ovarian cancer growth in an adipocyte-rich microenvironment.
    Cancer immunology, immunotherapy : CII, 2020, Volume: 69, Issue:1

    Topics: Adipocytes; Animals; CD36 Antigens; Cell Line, Tumor; Cell Proliferation; Disease Models, Animal; Di

2020
Beta-Aminoisobutyric Acid Inhibits Hypothalamic Inflammation by Reversing Microglia Activation.
    Cells, 2019, 12-11, Volume: 8, Issue:12

    Topics: Aminoisobutyric Acids; Animals; Cell Line; Cytokines; Diet, High-Fat; Disease Models, Animal; Enceph

2019
Acid sphingomyelinase downregulation alleviates vascular endothelial leptin resistance in rats.
    Acta pharmacologica Sinica, 2020, Volume: 41, Issue:5

    Topics: Amitriptyline; Animals; Biocatalysis; Cells, Cultured; Disease Models, Animal; Down-Regulation; Endo

2020
Arachidonic acid inhibits inflammatory responses by binding to myeloid differentiation factor-2 (MD2) and preventing MD2/toll-like receptor 4 signaling activation.
    Biochimica et biophysica acta. Molecular basis of disease, 2020, 05-01, Volume: 1866, Issue:5

    Topics: Acute Lung Injury; Animals; Arachidonic Acid; Cell Line; Diet, High-Fat; Disease Models, Animal; Fat

2020
Ionizing radiation induces cutaneous lipid remolding and skin adipocytes confer protection against radiation-induced skin injury.
    Journal of dermatological science, 2020, Volume: 97, Issue:2

    Topics: Adipocytes; Animals; Cell Movement; Coculture Techniques; Diet, High-Fat; Disease Models, Animal; Di

2020
MLKL-dependent signaling regulates autophagic flux in a murine model of non-alcohol-associated fatty liver and steatohepatitis.
    Journal of hepatology, 2020, Volume: 73, Issue:3

    Topics: Animals; Apoptosis; Autophagosomes; Autophagy; Cell Line, Transformed; Cell Membrane; Diet, Western;

2020
Inhibition of stearoyl-coenzyme A desaturase 1 ameliorates hepatic steatosis by inducing AMPK-mediated lipophagy.
    Aging, 2020, 04-23, Volume: 12, Issue:8

    Topics: AMP-Activated Protein Kinases; Animals; Autophagy; Disease Models, Animal; Enzyme Inhibitors; Fatty

2020
PvrA is a novel regulator that contributes to Pseudomonas aeruginosa pathogenesis by controlling bacterial utilization of long chain fatty acids.
    Nucleic acids research, 2020, 06-19, Volume: 48, Issue:11

    Topics: Animals; Arginine; Bacterial Proteins; Base Sequence; Chromatin Immunoprecipitation; Disease Models,

2020
Impact of the gonococcal FC428
    Emerging microbes & infections, 2020, Volume: 9, Issue:1

    Topics: Alleles; Animals; Anti-Bacterial Agents; Ceftriaxone; Disease Models, Animal; Drug Resistance, Bacte

2020
Expression of Notch family is altered in non‑alcoholic fatty liver disease.
    Molecular medicine reports, 2020, Volume: 22, Issue:3

    Topics: Animals; Cell Line; Cell Movement; Cell Proliferation; Diet; Disease Models, Animal; Gene Expression

2020
Evaluation of the In Vitro Damage Caused by Lipid Factors on Stem Cells from a Female Rat Model of Type 2 Diabetes/Obesity and Stress Urinary Incontinence.
    International journal of molecular sciences, 2020, Jul-17, Volume: 21, Issue:14

    Topics: Animals; Apoptosis; Cells, Cultured; Cholesterol; Diabetes Mellitus, Type 2; Disease Models, Animal;

2020
Gonococcal Adaptation to Palmitic Acid Through farAB Expression and FadD Activity Mutations Increases In Vivo Fitness in a Murine Genital Tract Infection Model.
    The Journal of infectious diseases, 2021, 07-02, Volume: 224, Issue:1

    Topics: Animals; Bacterial Proteins; Coenzyme A Ligases; Disease Models, Animal; Female; Gonorrhea; HeLa Cel

2021
Interleukin-33 alleviates diabetic cardiomyopathy through regulation of endoplasmic reticulum stress and autophagy via insulin-like growth factor-binding protein 3.
    Journal of cellular physiology, 2021, Volume: 236, Issue:6

    Topics: Animals; Apoptosis Regulatory Proteins; Autophagy; Autophagy-Related Proteins; Cells, Cultured; Diab

2021
Role of endoplasmic reticulum stress in renal damage after myocardial infarction.
    Clinical science (London, England : 1979), 2021, 01-15, Volume: 135, Issue:1

    Topics: Adult; Animals; Cells, Cultured; Disease Models, Animal; Endoplasmic Reticulum Stress; Female; Fibro

2021
Anti-inflammatory potential of myristic acid and palmitic acid synergism against systemic candidiasis in Danio rerio (Zebrafish).
    Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie, 2021, Volume: 133

    Topics: Animals; Anti-Inflammatory Agents; Antifungal Agents; Candida albicans; Candida tropicalis; Candidia

2021
Ophiopogonin D alleviates diabetic myocardial injuries by regulating mitochondrial dynamics.
    Journal of ethnopharmacology, 2021, May-10, Volume: 271

    Topics: Animals; Apoptosis; Blood Glucose; Body Weight; Calcineurin; Calcium; Cardiotonic Agents; Cell Line;

2021
Mesenchymal stem cell-conditioned medium improved mitochondrial function and alleviated inflammation and apoptosis in non-alcoholic fatty liver disease by regulating SIRT1.
    Biochemical and biophysical research communications, 2021, 03-26, Volume: 546

    Topics: Animals; Apoptosis; Cell Line; Cells, Cultured; Culture Media, Conditioned; Diabetes Mellitus, Type

2021
Novel FoxO1 inhibitor, JY-2, ameliorates palmitic acid-induced lipotoxicity and gluconeogenesis in a murine model.
    European journal of pharmacology, 2021, May-15, Volume: 899

    Topics: Animals; Blood Glucose; Diabetes Mellitus; Diet, High-Fat; Disease Models, Animal; Gene Expression R

2021
Protection of palmitic acid treatment in RAW264.7 cells and BALB/c mice during
    Journal of veterinary science, 2021, Volume: 22, Issue:2

    Topics: Animals; Anti-Bacterial Agents; Brucella abortus; Brucellosis; Disease Models, Animal; Female; Mice;

2021
Impaired Ca
    American journal of physiology. Cell physiology, 2021, 07-01, Volume: 321, Issue:1

    Topics: Alstrom Syndrome; Animals; Blood Glucose; Calcium; Calcium Signaling; Diabetes Mellitus, Type 2; Dis

2021
Toll-like receptor 4 is a master regulator for colorectal cancer growth under high-fat diet by programming cancer metabolism.
    Cell death & disease, 2021, 08-12, Volume: 12, Issue:8

    Topics: Animals; Binding Sites; Body Weight; Cell Line, Tumor; Cell Proliferation; Colorectal Neoplasms; Die

2021
Saturated fatty acids induce development of both metabolic syndrome and osteoarthritis in rats.
    Scientific reports, 2017, 04-18, Volume: 7

    Topics: Animals; Cattle; Cells, Cultured; Chondrocytes; Disease Models, Animal; Fatty Acids; Heparan Sulfate

2017
Negligible effect of eNOS palmitoylation on fatty acid regulation of contraction in ventricular myocytes from healthy and hypertensive rats.
    Pflugers Archiv : European journal of physiology, 2017, Volume: 469, Issue:9

    Topics: Animals; Arginine; Disease Models, Animal; Fatty Acids; Heart Ventricles; Hypertension; Male; Myocar

2017
Pioglitazone Enhances Cytosolic Lipolysis, β-oxidation and Autophagy to Ameliorate Hepatic Steatosis.
    Scientific reports, 2017, 08-22, Volume: 7, Issue:1

    Topics: Animals; Autophagy; Cell Line; Diet, High-Fat; Disease Models, Animal; Humans; Insulin; Leupeptins;

2017
Glucagon-like peptide-1 analog prevents obesity-related glomerulopathy by inhibiting excessive autophagy in podocytes.
    American journal of physiology. Renal physiology, 2018, 02-01, Volume: 314, Issue:2

    Topics: Animals; Autophagy; Blood Glucose; Cell Line; Cytoprotection; Diet, High-Fat; Disease Models, Animal

2018
HRD1 prevents apoptosis in renal tubular epithelial cells by mediating eIF2α ubiquitylation and degradation.
    Cell death & disease, 2017, 12-11, Volume: 8, Issue:12

    Topics: Animals; Apoptosis; bcl-2-Associated X Protein; Caspase 3; Cell Line; Diabetic Nephropathies; Diseas

2017
miR-192-5p regulates lipid synthesis in non-alcoholic fatty liver disease through SCD-1.
    World journal of gastroenterology, 2017, Dec-14, Volume: 23, Issue:46

    Topics: Animals; Cell Line, Tumor; Diet, High-Fat; Disease Models, Animal; Down-Regulation; Gene Knockdown T

2017
Inhibition of insulin resistance by PGE1 via autophagy-dependent FGF21 pathway in diabetic nephropathy.
    Scientific reports, 2018, 01-08, Volume: 8, Issue:1

    Topics: Alprostadil; Animals; Autophagy; Cell Survival; Diabetes Mellitus, Type 2; Diabetic Nephropathies; D

2018
Omega-3-carboxylic acids provide efficacious anti-inflammatory activity in models of crystal-mediated inflammation.
    Scientific reports, 2018, 01-19, Volume: 8, Issue:1

    Topics: Animals; Anti-Inflammatory Agents; Arthritis, Gouty; Carboxylic Acids; Cell Movement; Cytokines; Din

2018
Down-regulation of microRNA-375 regulates adipokines and inhibits inflammatory cytokines by targeting AdipoR2 in non-alcoholic fatty liver disease.
    Clinical and experimental pharmacology & physiology, 2018, Volume: 45, Issue:8

    Topics: Adipokines; Animals; Cytokines; Diet, High-Fat; Disease Models, Animal; Down-Regulation; Hep G2 Cell

2018
Palmitate induces nitric oxide production and inflammatory cytokine expression in zebrafish.
    Fish & shellfish immunology, 2018, Volume: 79

    Topics: Animals; Biomarkers; Cytokines; Diabetes Mellitus, Type 2; Disease Models, Animal; Embryo, Nonmammal

2018
Effects of saturated palmitic acid and omega-3 polyunsaturated fatty acids on Sertoli cell apoptosis.
    Systems biology in reproductive medicine, 2018, Volume: 64, Issue:5

    Topics: Animals; Apoptosis; Cell Survival; Diet, High-Fat; Disease Models, Animal; DNA Damage; Fas Ligand Pr

2018
Cangju Qinggan Jiangzhi Decoction Reduces the Development of NonAlcoholic Steatohepatitis and Activation of Kupffer Cells.
    Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology, 2018, Volume: 48, Issue:3

    Topics: Alanine Transaminase; Animals; Aspartate Aminotransferases; Caspases; Cytokines; Diet, High-Fat; Dis

2018
Palmitate aggravates proteinuria-induced cell death and inflammation via CD36-inflammasome axis in the proximal tubular cells of obese mice.
    American journal of physiology. Renal physiology, 2018, 12-01, Volume: 315, Issue:6

    Topics: Animals; Apoptosis; CARD Signaling Adaptor Proteins; CD36 Antigens; Cell Line; Diet, High-Fat; Disea

2018
Hepatocyte miR-33a mediates mitochondrial dysfunction and hepatosteatosis by suppressing NDUFA5.
    Journal of cellular and molecular medicine, 2018, Volume: 22, Issue:12

    Topics: Adenosine Triphosphate; Animals; Diet, High-Fat; Disease Models, Animal; Fatty Liver; Gene Expressio

2018
Palmatine attenuated dextran sulfate sodium (DSS)-induced colitis via promoting mitophagy-mediated NLRP3 inflammasome inactivation.
    Molecular immunology, 2019, Volume: 105

    Topics: Animals; Colitis; Cyclosporine; Dextran Sulfate; Disease Models, Animal; Humans; Inflammasomes; Male

2019
Antitumor effect of palmitic acid-conjugated DsiRNA for colon cancer in a mouse subcutaneous tumor model.
    Chemical biology & drug design, 2019, Volume: 93, Issue:4

    Topics: Animals; Antineoplastic Agents; beta Catenin; Cell Line, Tumor; Cell Membrane Permeability; Cell Sur

2019
Hepatocyte-Derived Lipotoxic Extracellular Vesicle Sphingosine 1-Phosphate Induces Macrophage Chemotaxis.
    Frontiers in immunology, 2018, Volume: 9

    Topics: Animals; Cell Line; Chemotaxis; Diet, Atherogenic; Diet, Carbohydrate Loading; Diet, High-Fat; Disea

2018
Inhibition of soluble epoxide hydrolase attenuates a high-fat diet-mediated renal injury by activating PAX2 and AMPK.
    Proceedings of the National Academy of Sciences of the United States of America, 2019, 03-12, Volume: 116, Issue:11

    Topics: Adenylate Kinase; Animals; Cytochrome P-450 Enzyme System; Diet, High-Fat; Disease Models, Animal; E

2019
A Peptide-Based HIV-1 Fusion Inhibitor with Two Tail-Anchors and Palmitic Acid Exhibits Substantially Improved In Vitro and Ex Vivo Anti-HIV-1 Activity and Prolonged In Vivo Half-Life.
    Molecules (Basel, Switzerland), 2019, Mar-21, Volume: 24, Issue:6

    Topics: Amino Acid Sequence; Animals; Circular Dichroism; Disease Models, Animal; Dose-Response Relationship

2019
Lipopolysaccharide and palmitic acid synergistically induced MCP-1 production via MAPK-meditated TLR4 signaling pathway in RAW264.7 cells.
    Lipids in health and disease, 2019, Mar-25, Volume: 18, Issue:1

    Topics: Animals; Chemokine CCL2; Diabetes Mellitus; Disease Models, Animal; Drug Synergism; Gene Expression

2019
Ceramide-2 nanovesicles for effective transdermal delivery: development, characterization and pharmacokinetic evaluation.
    Drug development and industrial pharmacy, 2014, Volume: 40, Issue:4

    Topics: Administration, Cutaneous; Animals; Anti-Inflammatory Agents, Non-Steroidal; Ceramides; Chemistry, P

2014
Tectorigenin Attenuates Palmitate-Induced Endothelial Insulin Resistance via Targeting ROS-Associated Inflammation and IRS-1 Pathway.
    PloS one, 2013, Volume: 8, Issue:6

    Topics: Animals; Disease Models, Animal; Endothelium, Vascular; Gene Expression Regulation; Human Umbilical

2013
Elevated toll-like receptor 3 inhibits pancreatic β-cell proliferation through G1 phase cell cycle arrest.
    Molecular and cellular endocrinology, 2013, Sep-05, Volume: 377, Issue:1-2

    Topics: Adaptor Proteins, Vesicular Transport; Animals; Cell Line; Cell Proliferation; Cell Survival; Cyclin

2013
Tracking brain palmitoylation change: predominance of glial change in a mouse model of Huntington's disease.
    Chemistry & biology, 2013, Nov-21, Volume: 20, Issue:11

    Topics: Acyltransferases; Animals; Brain; Disease Models, Animal; Huntington Disease; Mice; Mice, Inbred C57

2013
EZH2 down-regulation exacerbates lipid accumulation and inflammation in in vitro and in vivo NAFLD.
    International journal of molecular sciences, 2013, Dec-12, Volume: 14, Issue:12

    Topics: Adenosine; Animals; Disease Models, Animal; Down-Regulation; Enhancer of Zeste Homolog 2 Protein; Fa

2013
Simvastatin inhibits LPS-induced alveolar bone loss during metabolic syndrome.
    Journal of dental research, 2014, Volume: 93, Issue:3

    Topics: Aggregatibacter actinomycetemcomitans; Alveolar Bone Loss; Animals; Anti-Inflammatory Agents; Blood

2014
Palmitic acid induces autophagy in hepatocytes via JNK2 activation.
    Acta pharmacologica Sinica, 2014, Volume: 35, Issue:4

    Topics: Animals; Apoptosis; Apoptosis Regulatory Proteins; Autophagy; Autophagy-Related Protein 5; Beclin-1;

2014
Hepatic toxicity of dronedarone in mice: role of mitochondrial β-oxidation.
    Toxicology, 2014, Sep-02, Volume: 323

    Topics: Alanine Transaminase; Amiodarone; Animals; Anti-Arrhythmia Agents; bcl-2-Associated X Protein; Disea

2014
Thioredoxin-interacting protein mediates hepatic lipogenesis and inflammation via PRMT1 and PGC-1α regulation in vitro and in vivo.
    Journal of hepatology, 2014, Volume: 61, Issue:5

    Topics: Animals; Carrier Proteins; Cell Line; Diet, High-Fat; Disease Models, Animal; Hepatocytes; Humans; L

2014
Decreasing mitochondrial fission alleviates hepatic steatosis in a murine model of nonalcoholic fatty liver disease.
    American journal of physiology. Gastrointestinal and liver physiology, 2014, Sep-15, Volume: 307, Issue:6

    Topics: Animals; Cells, Cultured; Diet, High-Fat; Disease Models, Animal; Disease Progression; Energy Metabo

2014
Gender-related effects on substrate utilization and metabolic adaptation in hairless spontaneously hypertensive rat.
    Physiological research, 2015, Volume: 64, Issue:1

    Topics: Adaptation, Physiological; Adipose Tissue, Brown; Adiposity; Animals; Cold Temperature; Desmogleins;

2015
GC-EI-MS analysis of fatty acid composition in brain and serum of twitcher mouse.
    Lipids, 2014, Volume: 49, Issue:11

    Topics: Analysis of Variance; Animals; Brain Chemistry; Disease Models, Animal; Docosahexaenoic Acids; Fatty

2014
The expression of Ubc9 and the intensity of SERCA2a-SUMOylation were reduced in diet-induced obese rats and partially restored by trimetazidine.
    Journal of cardiovascular pharmacology, 2015, Volume: 65, Issue:1

    Topics: Animals; Disease Models, Animal; Male; Myocytes, Cardiac; Obesity; Palmitic Acid; Rats; Rats, Spragu

2015
CYP2J2 overexpression attenuates nonalcoholic fatty liver disease induced by high-fat diet in mice.
    American journal of physiology. Endocrinology and metabolism, 2015, Jan-15, Volume: 308, Issue:2

    Topics: 8,11,14-Eicosatrienoic Acid; Alanine Transaminase; Animals; Aspartate Aminotransferases; Catalase; C

2015
Metabolic syndrome exacerbates inflammation and bone loss in periodontitis.
    Journal of dental research, 2015, Volume: 94, Issue:2

    Topics: Aggregatibacter actinomycetemcomitans; Alveolar Bone Loss; Animals; Chemokine CCL2; Cytokines; Diet,

2015
Palmitate activation by fatty acid transport protein 4 as a model system for hepatocellular apoptosis and steatosis.
    Biochimica et biophysica acta, 2015, Volume: 1851, Issue:5

    Topics: Acyl Coenzyme A; Animals; Apoptosis; Cell Line, Tumor; Ceramides; Diet, High-Fat; Disease Models, An

2015
Proteasome Dysfunction Associated to Oxidative Stress and Proteotoxicity in Adipocytes Compromises Insulin Sensitivity in Human Obesity.
    Antioxidants & redox signaling, 2015, Sep-01, Volume: 23, Issue:7

    Topics: 3T3-L1 Cells; Adipocytes; Adult; Animals; Disease Models, Animal; Endoplasmic Reticulum Stress; Fema

2015
Lipidomic-based investigation into the regulatory effect of Schisandrin B on palmitic acid level in non-alcoholic steatotic livers.
    Scientific reports, 2015, Mar-13, Volume: 5

    Topics: Animals; Cyclooctanes; Diet, High-Fat; Disease Models, Animal; Fasting; Fatty Acid Synthases; Fatty

2015
Possible Involvement of Palmitate in Pathogenesis of Periodontitis.
    Journal of cellular physiology, 2015, Volume: 230, Issue:12

    Topics: Animals; CD36 Antigens; Cell Line, Tumor; Cytokines; Diabetes Mellitus, Type 2; Disease Models, Anim

2015
Ezetimibe improves hepatic steatosis in relation to autophagy in obese and diabetic rats.
    World journal of gastroenterology, 2015, Jul-07, Volume: 21, Issue:25

    Topics: Animals; Anticholesteremic Agents; Autophagy; Biomarkers; Blood Glucose; Cells, Cultured; Diabetes M

2015
Necroptosis is a key pathogenic event in human and experimental murine models of non-alcoholic steatohepatitis.
    Clinical science (London, England : 1979), 2015, Oct-01, Volume: 129, Issue:8

    Topics: Animals; Case-Control Studies; Cell Death; Choline Deficiency; Diet, High-Fat; Disease Models, Anima

2015
Decreased irisin secretion contributes to muscle insulin resistance in high-fat diet mice.
    International journal of clinical and experimental pathology, 2015, Volume: 8, Issue:6

    Topics: Adipose Tissue; Animals; Biomarkers; Blood Glucose; Cell Line; Diabetes Mellitus, Type 2; Diet, High

2015
PGC-1α Promoter Methylation in Parkinson's Disease.
    PloS one, 2015, Volume: 10, Issue:8

    Topics: Aged; Aged, 80 and over; Animals; Disease Models, Animal; DNA Methylation; Epigenesis, Genetic; Fema

2015
C1q/TNF-Related Protein 9 (CTRP9) attenuates hepatic steatosis via the autophagy-mediated inhibition of endoplasmic reticulum stress.
    Molecular and cellular endocrinology, 2015, Dec-05, Volume: 417

    Topics: Adiponectin; Animals; Autophagy; Disease Models, Animal; Endoplasmic Reticulum Stress; Gene Expressi

2015
Myristic acid potentiates palmitic acid-induced lipotoxicity and steatohepatitis associated with lipodystrophy by sustaning de novo ceramide synthesis.
    Oncotarget, 2015, Dec-08, Volume: 6, Issue:39

    Topics: Animals; Anthracenes; Apoptosis; Ceramides; Cholesterol; Disease Models, Animal; Endoplasmic Reticul

2015
Peroxisome proliferator-activated receptor-delta agonist ameliorated inflammasome activation in nonalcoholic fatty liver disease.
    World journal of gastroenterology, 2015, Dec-07, Volume: 21, Issue:45

    Topics: Animals; Anti-Inflammatory Agents; Blood Glucose; Cytoprotection; Diet, High-Fat; Disease Models, An

2015
Intrarenal renin-angiotensin system mediates fatty acid-induced ER stress in the kidney.
    American journal of physiology. Renal physiology, 2016, Mar-01, Volume: 310, Issue:5

    Topics: Amides; Angiotensin II; Angiotensin II Type 1 Receptor Blockers; Animals; Apoptosis; Blood Glucose;

2016
Palmitic Acid Reduces Circulating Bone Formation Markers in Obese Animals and Impairs Osteoblast Activity via C16-Ceramide Accumulation.
    Calcified tissue international, 2016, Volume: 98, Issue:5

    Topics: Absorptiometry, Photon; Animals; Biomarkers; Ceramides; Diet, High-Fat; Disease Models, Animal; Enzy

2016
Polydatin ameliorates lipid and glucose metabolism in type 2 diabetes mellitus by downregulating proprotein convertase subtilisin/kexin type 9 (PCSK9).
    Cardiovascular diabetology, 2016, Feb-01, Volume: 15

    Topics: Animals; Biomarkers; Blood Glucose; Diabetes Mellitus, Type 2; Disease Models, Animal; Down-Regulati

2016
Dietary saturated fatty acid and polyunsaturated fatty acid oppositely affect hepatic NOD-like receptor protein 3 inflammasome through regulating nuclear factor-kappa B activation.
    World journal of gastroenterology, 2016, Feb-28, Volume: 22, Issue:8

    Topics: Animals; Caspase 1; Cells, Cultured; Diet, High-Fat; Disease Models, Animal; Docosahexaenoic Acids;

2016
Regulation of Vascular Smooth Muscle Cell Dysfunction Under Diabetic Conditions by miR-504.
    Arteriosclerosis, thrombosis, and vascular biology, 2016, Volume: 36, Issue:5

    Topics: Animals; Aorta, Thoracic; Aortic Diseases; Atherosclerosis; Cell Movement; Cell Proliferation; Cells

2016
Heterozygous caveolin-3 mice show increased susceptibility to palmitate-induced insulin resistance.
    Physiological reports, 2016, Volume: 4, Issue:6

    Topics: Animals; Blood Glucose; Caveolae; Caveolin 3; CD36 Antigens; Cell Line; Diet, High-Fat; Disease Mode

2016
Cellular cholesterol accumulation modulates high fat high sucrose (HFHS) diet-induced ER stress and hepatic inflammasome activation in the development of non-alcoholic steatohepatitis.
    Biochimica et biophysica acta, 2016, Volume: 1861, Issue:7

    Topics: Animals; Cholesterol, Dietary; Diet, High-Fat; Disease Models, Animal; Endoplasmic Reticulum Stress;

2016
Equol Attenuates Atherosclerosis in Apolipoprotein E-Deficient Mice by Inhibiting Endoplasmic Reticulum Stress via Activation of Nrf2 in Endothelial Cells.
    PloS one, 2016, Volume: 11, Issue:12

    Topics: Activating Transcription Factor 6; Animals; Aorta; Apolipoproteins E; Apoptosis; Atherosclerosis; Ch

2016
Targeting metastasis-initiating cells through the fatty acid receptor CD36.
    Nature, 2017, 01-05, Volume: 541, Issue:7635

    Topics: Animals; Antibodies, Neutralizing; CD36 Antigens; Cell Proliferation; Diet, High-Fat; Disease Models

2017
Functional lipidomics: Palmitic acid impairs hepatocellular carcinoma development by modulating membrane fluidity and glucose metabolism.
    Hepatology (Baltimore, Md.), 2017, Volume: 66, Issue:2

    Topics: Animals; Carcinoma, Hepatocellular; Cell Movement; Cell Proliferation; Disease Models, Animal; Gluco

2017
STING-IRF3 Triggers Endothelial Inflammation in Response to Free Fatty Acid-Induced Mitochondrial Damage in Diet-Induced Obesity.
    Arteriosclerosis, thrombosis, and vascular biology, 2017, Volume: 37, Issue:5

    Topics: Active Transport, Cell Nucleus; Adipose Tissue; Animals; Cell Line, Tumor; Coculture Techniques; Die

2017
Limited functional and metabolic improvements in hypertrophic and healthy rat heart overexpressing the skeletal muscle isoform of SERCA1 by adenoviral gene transfer in vivo.
    American journal of physiology. Heart and circulatory physiology, 2008, Volume: 295, Issue:6

    Topics: Adenosine Triphosphate; Adenoviridae; Adrenergic beta-Agonists; Animals; Calcium-Binding Proteins; C

2008
Dietary palmitic acid modulates intestinal re-growth after massive small bowel resection in a rat.
    Pediatric surgery international, 2008, Volume: 24, Issue:12

    Topics: Adaptation, Physiological; Animals; Apoptosis; Cell Proliferation; Diet; Disease Models, Animal; Ent

2008
Western diet impairs metabolic remodelling and contractile efficiency in cardiac hypertrophy.
    Cardiovascular research, 2009, Feb-15, Volume: 81, Issue:3

    Topics: Acyl-CoA Dehydrogenase; Animals; CD36 Antigens; Diabetes Mellitus, Type 2; Dietary Fats; Disease Mod

2009
Endothelial heparanase secretion after acute hypoinsulinemia is regulated by glucose and fatty acid.
    American journal of physiology. Heart and circulatory physiology, 2009, Volume: 296, Issue:4

    Topics: Animals; Cattle; Cells, Cultured; Cytochalasin D; Cytoskeleton; Diazoxide; Disease Models, Animal; E

2009
Novel formulation of solid lipid microparticles of curcumin for anti-angiogenic and anti-inflammatory activity for optimization of therapy of inflammatory bowel disease.
    The Journal of pharmacy and pharmacology, 2009, Volume: 61, Issue:3

    Topics: Animals; Anti-Inflammatory Agents, Non-Steroidal; Chick Embryo; Chorioallantoic Membrane; Colitis; C

2009
Contribution of insulin and Akt1 signaling to endothelial nitric oxide synthase in the regulation of endothelial function and blood pressure.
    Circulation research, 2009, May-08, Volume: 104, Issue:9

    Topics: Animals; Blood Pressure; Cells, Cultured; Dietary Fats; Disease Models, Animal; Dose-Response Relati

2009
12/15-lipoxygenase products induce inflammation and impair insulin signaling in 3T3-L1 adipocytes.
    Obesity (Silver Spring, Md.), 2009, Volume: 17, Issue:9

    Topics: 12-Hydroxy-5,8,10,14-eicosatetraenoic Acid; 3T3-L1 Cells; Adipocytes; Adiponectin; Animals; Arachido

2009
[Blood cell phagocytic activity and free fatty acids content in rat brain in modeling of the brain blood supply disorders].
    Fiziolohichnyi zhurnal (Kiev, Ukraine : 1994), 2009, Volume: 55, Issue:2

    Topics: Animals; Arachidonic Acid; Brain; Brain Ischemia; Cerebrovascular Circulation; Disease Models, Anima

2009
Cardioprotection by GSK-3 inhibition: role of enhanced glycogen synthesis and attenuation of calcium overload.
    Cardiovascular research, 2010, Jun-01, Volume: 86, Issue:3

    Topics: Animals; Calcium; Cardiotonic Agents; Disease Models, Animal; Down-Regulation; Glucose; Glycogen; Gl

2010
Reduced NO-cGMP signaling contributes to vascular inflammation and insulin resistance induced by high-fat feeding.
    Arteriosclerosis, thrombosis, and vascular biology, 2010, Volume: 30, Issue:4

    Topics: Animals; Aorta, Thoracic; Aortic Diseases; Cell Adhesion Molecules; Cells, Cultured; Cyclic GMP; Cyc

2010
Reduced NO-cGMP signaling contributes to vascular inflammation and insulin resistance induced by high-fat feeding.
    Arteriosclerosis, thrombosis, and vascular biology, 2010, Volume: 30, Issue:4

    Topics: Animals; Aorta, Thoracic; Aortic Diseases; Cell Adhesion Molecules; Cells, Cultured; Cyclic GMP; Cyc

2010
Reduced NO-cGMP signaling contributes to vascular inflammation and insulin resistance induced by high-fat feeding.
    Arteriosclerosis, thrombosis, and vascular biology, 2010, Volume: 30, Issue:4

    Topics: Animals; Aorta, Thoracic; Aortic Diseases; Cell Adhesion Molecules; Cells, Cultured; Cyclic GMP; Cyc

2010
Reduced NO-cGMP signaling contributes to vascular inflammation and insulin resistance induced by high-fat feeding.
    Arteriosclerosis, thrombosis, and vascular biology, 2010, Volume: 30, Issue:4

    Topics: Animals; Aorta, Thoracic; Aortic Diseases; Cell Adhesion Molecules; Cells, Cultured; Cyclic GMP; Cyc

2010
Palmitoylation of oncogenic NRAS is essential for leukemogenesis.
    Blood, 2010, Apr-29, Volume: 115, Issue:17

    Topics: Animals; Cell Membrane; Cell Transformation, Neoplastic; Disease Models, Animal; Farnesyltranstransf

2010
Mitochondrial dysfunction precedes insulin resistance and hepatic steatosis and contributes to the natural history of non-alcoholic fatty liver disease in an obese rodent model.
    Journal of hepatology, 2010, Volume: 52, Issue:5

    Topics: Adipose Tissue; Animals; Azo Compounds; Body Composition; Disease Models, Animal; Energy Intake; Fat

2010
Demand-induced ischemia in volume expanded isolated rat heart; the effect of dichloroacetate and trimetazidine.
    Journal of physiology and pharmacology : an official journal of the Polish Physiological Society, 2010, Volume: 61, Issue:2

    Topics: Animals; Coronary Circulation; Dichloroacetic Acid; Disease Models, Animal; Dobutamine; Fatty Acids;

2010
Fatty acid metabolism in the liver, measured by positron emission tomography, is increased in obese individuals.
    Gastroenterology, 2010, Volume: 139, Issue:3

    Topics: Animals; Carbon Radioisotopes; Case-Control Studies; Disease Models, Animal; Fasting; Fatty Acids; H

2010
In obese Zucker rats, lipids accumulate in the heart despite normal mitochondrial content, morphology and long-chain fatty acid oxidation.
    The Journal of physiology, 2011, Jan-01, Volume: 589, Issue:Pt 1

    Topics: 3-Hydroxyacyl CoA Dehydrogenases; Animals; Biological Transport; Carnitine O-Palmitoyltransferase; C

2011
Lysophosphatidylcholine as an effector of fatty acid-induced insulin resistance.
    Journal of lipid research, 2011, Volume: 52, Issue:6

    Topics: Animals; Blood Proteins; Cells, Cultured; Diabetes Mellitus, Type 2; Disease Models, Animal; Gene Si

2011
Preserved insulin vasorelaxation and up-regulation of the Akt/eNOS pathway in coronary arteries from insulin resistant obese Zucker rats.
    Atherosclerosis, 2011, Volume: 217, Issue:2

    Topics: Animals; Blotting, Western; Coronary Vessels; Disease Models, Animal; Enzyme Inhibitors; Insulin; In

2011
Prolonged QT interval and lipid alterations beyond β-oxidation in very long-chain acyl-CoA dehydrogenase null mouse hearts.
    American journal of physiology. Heart and circulatory physiology, 2011, Volume: 301, Issue:3

    Topics: Acyl-CoA Dehydrogenase, Long-Chain; Age Factors; Aging; Analysis of Variance; Animals; Congenital Bo

2011
Second window of preconditioning normalizes palmitate use for oxidation and improves function during low-flow ischaemia.
    Cardiovascular research, 2011, Dec-01, Volume: 92, Issue:3

    Topics: Acetyl Coenzyme A; Animals; Coronary Circulation; Coronary Stenosis; Disease Models, Animal; Energy

2011
Subcellular lipid droplet distribution in red and white muscles in the obese Zucker rat.
    Diabetologia, 2012, Volume: 55, Issue:2

    Topics: Animals; Disease Models, Animal; DNA, Mitochondrial; Fatty Acids; Female; Glucose; Insulin; Lipids;

2012
Identification and quantification of the major volatile constituents in antidepressant active fraction of xiaoyaosan by gas chromatography-mass spectrometry.
    Journal of ethnopharmacology, 2012, May-07, Volume: 141, Issue:1

    Topics: 4-Butyrolactone; Animals; Antidepressive Agents; Behavior, Animal; Depression; Disease Models, Anima

2012
Elovl6 promotes nonalcoholic steatohepatitis.
    Hepatology (Baltimore, Md.), 2012, Volume: 56, Issue:6

    Topics: Acetyltransferases; Analysis of Variance; Animals; Blood Glucose; Carrier Proteins; Cholesterol; Die

2012
ApoE and the role of very low density lipoproteins in adipose tissue inflammation.
    Atherosclerosis, 2012, Volume: 223, Issue:2

    Topics: Adipose Tissue; Adiposity; Animals; Apolipoproteins E; Blood Glucose; Cytokines; Diet, High-Fat; Dis

2012
Acute liver carnitine palmitoyltransferase I overexpression recapitulates reduced palmitate oxidation of cardiac hypertrophy.
    Circulation research, 2013, Jan-04, Volume: 112, Issue:1

    Topics: Acetyl-CoA Carboxylase; Animals; Atrial Natriuretic Factor; Carboxy-Lyases; Cardiomegaly; Carnitine

2013
Effect of diabetes and contractile activity on incorporation of the plasma-borne fatty acids into skeletal muscle lipids.
    Roczniki Akademii Medycznej w Bialymstoku (1995), 2002, Volume: 47

    Topics: Animals; Diabetes Mellitus, Experimental; Disease Models, Animal; Fatty Acids; Lipids; Male; Muscle

2002
Triacylglycerol molecular species are depleted to different extents in the myocardium of spontaneously hypertensive rats fed two oleic acid-rich oils.
    American journal of hypertension, 2005, Volume: 18, Issue:1

    Topics: Animals; Cholesterol; Disease Models, Animal; Eicosanoic Acids; Hypertension; Hypertrophy; Lipoprote

2005
P75 neurotrophin receptor regulates expression of neural cell adhesion molecule 1.
    Neurobiology of disease, 2005, Volume: 20, Issue:3

    Topics: Alzheimer Disease; Animals; Animals, Newborn; Binding Sites; Brain; CD56 Antigen; Disease Models, An

2005
Inverse relationship between PGC-1alpha protein expression and triacylglycerol accumulation in rodent skeletal muscle.
    Journal of applied physiology (Bethesda, Md. : 1985), 2006, Volume: 100, Issue:2

    Topics: Animals; CD36 Antigens; Disease Models, Animal; Fatty Acids; Hindlimb; Lipogenesis; Male; Mice; Mice

2006
Mitochondrial lipid abnormality and electron transport chain impairment in mice lacking alpha-synuclein.
    Molecular and cellular biology, 2005, Volume: 25, Issue:22

    Topics: alpha-Synuclein; Animals; Arachidonic Acid; Blotting, Western; Brain; Cardiolipins; Cell Membrane; D

2005
Perfused hearts from Type 2 diabetic (db/db) mice show metabolic responsiveness to insulin.
    American journal of physiology. Heart and circulatory physiology, 2006, Volume: 290, Issue:5

    Topics: Animals; Diabetes Mellitus, Type 2; Disease Models, Animal; Dose-Response Relationship, Drug; Glucos

2006
Effects of purification and fluorescent staining on viability of Mycobacterium leprae.
    International journal of leprosy and other mycobacterial diseases : official organ of the International Leprosy Association, 2005, Volume: 73, Issue:3

    Topics: Animals; Cell Membrane; Disease Models, Animal; Fluorescent Dyes; Foot; Leprosy; Macrophages, Perito

2005
Platelets possess and require an active protein palmitoylation pathway for agonist-mediated activation and in vivo thrombus formation.
    Arteriosclerosis, thrombosis, and vascular biology, 2007, Volume: 27, Issue:6

    Topics: Acyltransferases; Adaptor Proteins, Signal Transducing; Animals; Arterioles; Blood Platelets; Cerule

2007
Toll-like receptor-4 mediates vascular inflammation and insulin resistance in diet-induced obesity.
    Circulation research, 2007, Jun-08, Volume: 100, Issue:11

    Topics: Animals; Aorta, Thoracic; Body Composition; Body Weight; Cells, Cultured; Dietary Fats; Disease Mode

2007
Innate immune pathway links obesity to insulin resistance.
    Circulation research, 2007, Jun-08, Volume: 100, Issue:11

    Topics: Animals; Aorta; Dietary Fats; Disease Models, Animal; Humans; Immunity, Innate; Inflammation; Insuli

2007
Exercise-induced attenuation of obesity, hyperinsulinemia, and skeletal muscle lipid peroxidation in the OLETF rat.
    Journal of applied physiology (Bethesda, Md. : 1985), 2008, Volume: 104, Issue:3

    Topics: Adipose Tissue; Aging; Aldehydes; Animals; Blood Glucose; Disease Models, Animal; Eating; Glutathion

2008
Cardiac phosphatase-deficient 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase increases glycolysis, hypertrophy, and myocyte resistance to hypoxia.
    American journal of physiology. Heart and circulatory physiology, 2008, Volume: 294, Issue:6

    Topics: Animals; Cell Hypoxia; Disease Models, Animal; Glycolysis; Hypertrophy; Insulin; Male; Mice; Mice, T

2008
Saturated phosphatidylcholine secretion and the effect of natural surfactant on premature and term lambs ventilated for 2 days.
    Experimental lung research, 1983, Volume: 4, Issue:4

    Topics: Animals; Animals, Newborn; Blood Gas Analysis; Disease Models, Animal; Female; Humans; Infant, Newbo

1983
Altered glucose and fatty acid oxidation in hearts of the spontaneously hypertensive rat.
    Journal of molecular and cellular cardiology, 1994, Volume: 26, Issue:10

    Topics: Animals; Disease Models, Animal; Energy Metabolism; Fatty Acids; Glucose; Hypertension; Hypertrophy,

1994
Age, sex and source of hamster affect experimental cholesterol cholelithiasis.
    Lipids, 1993, Volume: 28, Issue:11

    Topics: Age Factors; Animals; Animals, Laboratory; Bile Acids and Salts; Cholelithiasis; Cholesterol; Cricet

1993
Abnormalities in hepatic fatty-acid metabolism in a surfactant/influenza B virus mouse model for acute encephalopathy.
    Biochimica et biophysica acta, 1996, Apr-12, Volume: 1315, Issue:3

    Topics: Adenosine Triphosphate; Administration, Cutaneous; Animals; Caprylates; Disease Models, Animal; Emul

1996
Acylation of human insulin with palmitic acid extends the time action of human insulin in diabetic dogs.
    Diabetes, 1997, Volume: 46, Issue:4

    Topics: Acylation; Animals; Blood Glucose; Chromatography, Gel; Diabetes Mellitus, Experimental; Disease Mod

1997
Abnormal surfactant metabolism and function in preterm ventilated baboons.
    American journal of respiratory and critical care medicine, 1998, Volume: 158, Issue:6

    Topics: 1,2-Dipalmitoylphosphatidylcholine; Animals; Animals, Newborn; Betamethasone; Bronchoalveolar Lavage

1998
Detection of impaired intestinal absorption of long-chain fatty acids: validation studies of a novel test in a rat model of fat malabsorption.
    The American journal of clinical nutrition, 2000, Volume: 72, Issue:1

    Topics: Animals; Anti-Obesity Agents; Carbon Isotopes; Dietary Fats; Disease Models, Animal; Feces; Intestin

2000
Palmitic acid enhances cholesterol gallstone incidence in Sasco hamsters fed cholesterol enriched diets.
    Lipids, 1992, Volume: 27, Issue:12

    Topics: Animals; Bile; Bile Acids and Salts; Body Weight; Cholelithiasis; Cholesterol, Dietary; Cricetinae;

1992
Differences between human, rat and guinea pig hepatocyte cultures. A comparative study of their rates of beta-oxidation and esterification of palmitate and their sensitivity to R-etomoxir.
    Biochemical pharmacology, 1991, Oct-09, Volume: 42, Issue:9

    Topics: Animals; Cells, Cultured; Disease Models, Animal; Epoxy Compounds; Esterification; Guinea Pigs; Huma

1991
Effects of subperineurial injections of very-long-chain and medium-chain fatty acids into rat sciatic nerve.
    Neurochemical pathology, 1986, Volume: 5, Issue:1

    Topics: Adrenoleukodystrophy; Animals; Cholesterol Esters; Diffuse Cerebral Sclerosis of Schilder; Disease M

1986
Retention and clearance of C-11 palmitic acid in ischemic and reperfused canine myocardium.
    Journal of the American College of Cardiology, 1985, Volume: 6, Issue:2

    Topics: Animals; Arterial Occlusive Diseases; Carbon Radioisotopes; Coronary Circulation; Coronary Disease;

1985