Page last updated: 2024-10-21

1-anilino-8-naphthalenesulfonate and Innate Inflammatory Response

1-anilino-8-naphthalenesulfonate has been researched along with Innate Inflammatory Response in 115 studies

1-anilino-8-naphthalenesulfonate: RN given refers to parent cpd
8-anilinonaphthalene-1-sulfonic acid : A naphthalenesulfonic acid that is naphthalene-1-sulfonic acid substituted by a phenylamino group at position 8.

Research Excerpts

ExcerptRelevanceReference
"In a previous article, we showed that a potent serotonin-, 5-hydroxytryptamine-2A (5-HT(2A)) antagonist, risperidone, ameliorated cerulein-induced edematous pancreatitis in mice."7.75Risperidone attenuates local and systemic inflammatory responses to ameliorate diet-induced severe necrotic pancreatitis in mice: it may provide a new therapy for acute pancreatitis. ( Hamada, K; Isayama, H; Kanazashi, S; Takeuchi, K; Yamaguchi, I; Yoshida, M, 2009)
" This study tested the hypothesis that pyrrolidine dithiocarbamate (PDTC) attenuates experimental acute pancreatitis."7.72Pyrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis. ( Britti, D; Cuzzocrea, S; Di Paola, R; Genovese, T; Mazzon, E; Serraino, I; Siriwardena, A; Thiemerman, C; Virlos, I, 2003)
"fragrans (L."5.43Investigation of antibacterial activity of aspidin BB against Propionibacterium acnes. ( Fu, YJ; Gao, C; Guo, N; Li, N; Luo, M; Peng, X; Wang, P; Wang, W, 2016)
"Two murine models were used to determine whether CCK receptor blockade with proglumide could prevent and reverse histologic and biochemical features of chronic pancreatitis: the 6-week repetitive chronic cerulein injection model and the modified 75% choline-deficient ethionine (CDE) diet."3.96Cholecystokinin Receptor Antagonist Therapy Decreases Inflammation and Fibrosis in Chronic Pancreatitis. ( Cao, H; Ciofoaia, V; Kallakury, B; Nadella, S; Smith, JP; Tucker, RD, 2020)
" In addition HF-fed rats developed hyperleptinemia and insulinemia as well as insulin resistance and glucose intolerance."3.79Dietary supplementation with Agaricus blazei murill extract prevents diet-induced obesity and insulin resistance in rats. ( Cani, PD; Delzenne, NM; Denom, J; Everard, A; Kassis, N; Magnan, C; Migrenne, S; Philippe, E; Rouch, C; Takeda, Y; Uchiyama, S; Vincent, M, 2013)
"In a previous article, we showed that a potent serotonin-, 5-hydroxytryptamine-2A (5-HT(2A)) antagonist, risperidone, ameliorated cerulein-induced edematous pancreatitis in mice."3.75Risperidone attenuates local and systemic inflammatory responses to ameliorate diet-induced severe necrotic pancreatitis in mice: it may provide a new therapy for acute pancreatitis. ( Hamada, K; Isayama, H; Kanazashi, S; Takeuchi, K; Yamaguchi, I; Yoshida, M, 2009)
" This study tested the hypothesis that pyrrolidine dithiocarbamate (PDTC) attenuates experimental acute pancreatitis."3.72Pyrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis. ( Britti, D; Cuzzocrea, S; Di Paola, R; Genovese, T; Mazzon, E; Serraino, I; Siriwardena, A; Thiemerman, C; Virlos, I, 2003)
" In vivo studies by encapsulating anti-inflammatory agents (aspirin and naproxen) in these polymeric nanomicelles and by applying topically resulted in significant reduction in inflammation."3.72Supramolecular assemblies based on copolymers of PEG600 and functionalized aromatic diesters for drug delivery applications. ( Chen, MH; Kumar, J; Kumar, R; Nicolosi, R; Parmar, VS; Samuelson, LA; Watterson, AC; Yoganathan, S, 2004)
"These mutated genes affect NAFLD by promoting liver steatosis (PNPLA3, MBOAT7, TM2SF6, PTPRD, FNDC5, IL-1B, PPARGC1A, UCP2, TCF7L2, SAMM50, IL-6, AGTR1, and NNMT), inflammation (PNPLA3, TNF-α, AGTR1, IL-17A, IL-1B, PTPRD, and GATAD2A), and fibrosis (IL-1B, PNPLA3, MBOAT7, TCF7L2, GATAD2A, IL-6, NNMT, UCP, AGTR1, and TM2SF6)."2.82Update on Non-Alcoholic Fatty Liver Disease-Associated Single Nucleotide Polymorphisms and Their Involvement in Liver Steatosis, Inflammation, and Fibrosis: A Narrative Review ( Dwi Astarini, F; Ratnasari, N; Wasityastuti, W, 2022)
"Obesity is a complex disease of great public health significance worldwide: It entails several complications including diabetes mellitus type 2, cardiovascular dysfunction and hypertension, and its prevalence is increasing around the world."2.61Plant Extracts and Reactive Oxygen Species as Two Counteracting Agents with Anti- and Pro-Obesity Properties. ( Jablonska, M; Malinowska, K; Merecz-Sadowska, A; Sitarek, P; Sliwinski, T; Zajdel, K; Zajdel, R; Zielinska-Blizniewska, H, 2019)
"Nonalcoholic fatty liver disease (NAFLD) is the most common chronic liver disease in the United States and represents an increasingly important etiology of hepatocellular carcinoma (HCC) with annual cumulative incidence rates ranging from 2% to 12% in cohorts of NAFLD cirrhosis."2.53Hepatocellular carcinoma in patients with non-alcoholic fatty liver disease. ( Lim, JK; Nguyen, MH; Wong, CR, 2016)
"In nonalcoholic fatty liver disease (NAFLD) the patatin-like phospholipase domain-containing 3 (PNPLA3) rs738409 variant is a contributor."1.72Hepatic patatin-like phospholipase domain-containing 3 levels are increased in I148M risk allele carriers and correlate with NAFLD in humans. ( Andréasson, AC; Antonsson, M; Bergenholm, L; Carlsson, B; Dix, CI; Ekstedt, M; Ericson, E; Fjellström, O; Hansson, SF; Kechagias, S; Knöchel, J; Lee, R; Liljeblad, M; Lindén, D; Nasr, P; Schumi, J, 2022)
"To induce a pathological type of cardiac hypertrophy we infused angiotensin II (AngII) for 2 days via osmotic mini pumps in control and tamoxifen-inducible, cardiomyocyte (CM)-specific p38 MAPKα KO mice (iCMp38αKO) and assessed cardiac function by echocardiography, complemented by transcriptomic, histological, and immune cell analysis."1.72Cardiomyocyte p38 MAPKα suppresses a heart-adipose tissue-neutrophil crosstalk in heart failure development. ( Bottermann, K; Deenen, R; Fischer, JW; Gödecke, A; Grandoch, M; Harris, TE; Hemmers, A; Herebian, D; Kalfhues, L; Köhrer, K; Leitner, LM; Nederlof, R; Nemmer, J; Oenarto, V; Petzsch, P; Pfeffer, M; Raje, V; Reichert, AS; Stegbauer, J; Zabri, H, 2022)
"Obesity is an important risk factor for severe acute pancreatitis."1.72Free Fatty Acid Increases the Expression of NLRP3-Caspase1 in Adipose Tissue Macrophages in Obese Severe Acute Pancreatitis. ( Ding, Z; Guo, X; Sheng, L; Xu, T, 2022)
"Despite initial chemotherapy response, ovarian cancer is the deadliest gynecologic cancer, due to frequent relapse and onset of drug resistance."1.56Cholesterol Homeostasis Modulates Platinum Sensitivity in Human Ovarian Cancer. ( Avolio, R; Bifulco, M; Calice, G; Criscuolo, D; Crispo, F; Esposito, F; Laezza, C; Landriscina, M; Maddalena, F; Matassa, DS; Navarra, G; Pagano, C; Paladino, S, 2020)
"BACKGROUND Acute pancreatitis (AP) is a symptom of sudden pancreas inflammation, which causes patients severe suffering."1.56Fibroblast Growth Factor (FGF) Signaling Protects Against Acute Pancreatitis-Induced Damage by Modulating Inflammatory Responses. ( Chen, ZW; Jiang, YC; Lin, W; Tu, HJ; Zhao, CF, 2020)
"To evaluate, in patients with nonalcoholic fatty liver disease (NAFLD), the role of lifetime exposures associated with genetic predisposition, family history (parental obesity, economic income), programming during fetal life (gestational age, birthweight), being breastfed or not, and later biomarkers of dietary habits and lifestyle in the development of fibrosis."1.51The Role of Genetic Predisposition, Programing During Fetal Life, Family Conditions, and Post-natal Diet in the Development of Pediatric Fatty Liver Disease. ( Agostoni, C; Alisi, A; De Cosmi, V; Mosca, A; Nobili, V; Parazzini, F; Raponi, M, 2019)
"fragrans (L."1.43Investigation of antibacterial activity of aspidin BB against Propionibacterium acnes. ( Fu, YJ; Gao, C; Guo, N; Li, N; Luo, M; Peng, X; Wang, P; Wang, W, 2016)
"Visceral fat necrosis has been associated with severe acute pancreatitis (SAP) for over 100 years; however, its pathogenesis and role in SAP outcomes are poorly understood."1.42Lipolysis of visceral adipocyte triglyceride by pancreatic lipases converts mild acute pancreatitis to severe pancreatitis independent of necrosis and inflammation. ( Cline, RA; DeLany, JP; Durgampudi, C; Navina, S; Noel, P; Patel, K; Singh, VP; Trivedi, RN, 2015)
"Sivelestat is a specific neutrophil elastase inhibitor, which has been developed in Japan in 1991."1.39Protective effects of sivelestat in a caerulein-induced rat acute pancreatitis model. ( Cao, J; Liu, Q, 2013)
"Inflammation is associated with significant decreases in plasma HDL-cholesterol (HDL-C) and apoA-I levels."1.37Nascent HDL formation by hepatocytes is reduced by the concerted action of serum amyloid A and endothelial lipase. ( de Beer, FC; Jahangiri, A; Ji, A; van der Westhuyzen, DR; Webb, NR; Wroblewski, JM, 2011)
"Patients with COPD were prospectively enrolled and followed between March 2008 and September 2009."1.36Metabolic syndrome is associated with increased risk of acute exacerbation of COPD: a preliminary study. ( Erayman, Z; Gürsoy, A; Küpeli, E; Sahin, T; Ulasli, SS; Ulubay, G, 2010)
"Nonalcoholic steatohepatitis (NASH) is characterized by steatosis, inflammation, and oxidative stress."1.34CCAAT/enhancing binding protein beta deletion in mice attenuates inflammation, endoplasmic reticulum stress, and lipid accumulation in diet-induced nonalcoholic steatohepatitis. ( Friedman, JE; Janssen, RC; Jiang, H; Maclean, KN; Qadri, I; Rahman, SM; Schroeder-Gloeckler, JM, 2007)
"Parenchymal necrosis is a major complication of pancreatitis; also, the severity of experimental pancreatitis correlates directly with necrosis and inversely with apoptosis."1.33Cell death in pancreatitis: caspases protect from necrotizing pancreatitis. ( Gukovskaya, AS; Gukovsky, I; Hong, P; Lugea, A; Mareninova, OA; Pandol, SJ; Sung, KF, 2006)
"Upon induction of acute pancreatitis, myeloperoxidase activity in pancreas and serum concentrations of amylase and lipase were much higher and pancreatic lesions more severe in p8-deficient mice than in wild-type, indicating that p8 expression decreased pancreatic sensitivity to pancreatitis induction."1.32p8 improves pancreatic response to acute pancreatitis by enhancing the expression of the anti-inflammatory protein pancreatitis-associated protein I. ( Closa, D; Dagorn, JC; Fiedler, F; Folch-Puy, E; Garcia, S; Hlouschek, V; Iovanna, JL; Lerch, MM; Vasseur, S, 2004)
"Acute pancreatitis was induced by hourly (x5) i."1.31Absence of endogenous interleukin-6 enhances the inflammatory response during acute pancreatitis induced by cerulein in mice. ( Caputi, AP; Centorrino, T; Ciccolo, A; Cuzzocrea, S; de Sarro, A; Dugo, L; Mazzon, E; McDonald, MC; Thiemermann, C, 2002)
", Forssman shock, Forssman cutaneous vasculitis, zymosan-induced paw edema, endotoxin shock and local Shwartzman reaction, FUT-175 was highly effective in that, for example, intravenous dosing at 3 mg/kg could completely protect guinea pigs from the lethal Forssman shock."1.27Pharmacological studies of FUT-175, nafamstat mesilate. I. Inhibition of protease activity in in vitro and in vivo experiments. ( Aoyama, T; Fujita, M; Ino, Y; Koshiyama, Y; Oda, M; Ozeki, M; Sato, T; Suzuki, S, 1984)

Research

Studies (115)

TimeframeStudies, this research(%)All Research%
pre-19906 (5.22)18.7374
1990's5 (4.35)18.2507
2000's24 (20.87)29.6817
2010's58 (50.43)24.3611
2020's22 (19.13)2.80

Authors

AuthorsStudies
Saunders, MJ1
Edwards, BS1
Zhu, J1
Sklar, LA1
Graves, SW1
Tarasiuk, A1
Talar, M1
Bulak, K1
Fichna, J1
Tong, J1
Zhou, J1
Fang, M1
Wang, G1
Fu, S1
Sun, B2
Lv, J1
Vilar-Gomez, E1
Pirola, CJ1
Sookoian, S1
Wilson, LA1
Liang, T1
Chalasani, N1
Ericson, E1
Bergenholm, L1
Andréasson, AC1
Dix, CI1
Knöchel, J1
Hansson, SF1
Lee, R1
Schumi, J1
Antonsson, M1
Fjellström, O1
Nasr, P1
Liljeblad, M1
Carlsson, B1
Kechagias, S1
Lindén, D1
Ekstedt, M1
Dwi Astarini, F1
Ratnasari, N1
Wasityastuti, W1
Bottermann, K1
Kalfhues, L1
Nederlof, R1
Hemmers, A1
Leitner, LM1
Oenarto, V1
Nemmer, J1
Pfeffer, M1
Raje, V1
Deenen, R1
Petzsch, P1
Zabri, H1
Köhrer, K1
Reichert, AS1
Grandoch, M1
Fischer, JW1
Herebian, D1
Stegbauer, J1
Harris, TE1
Gödecke, A1
Tung, YT1
Wu, CH1
Chen, WC1
Pan, CH1
Chen, YW1
Tsao, SP1
Chen, CJ1
Huang, HY1
Yılmaz, TU3
Eraldemir, FC3
Gürel, B3
Yavuz, Ö3
Acar, E3
İşken, T3
Yılmaz, H3
Utkan, NZ3
Lindquist, S1
Wang, Y3
Andersson, EL1
Tsuji Grebe, S1
Alenius, GM1
Rantapää-Dahlqvist, S1
Lundberg, L1
Hernell, O1
Zielinska-Blizniewska, H1
Sitarek, P1
Merecz-Sadowska, A1
Malinowska, K1
Zajdel, K1
Jablonska, M1
Sliwinski, T1
Zajdel, R1
Nadella, S1
Ciofoaia, V1
Cao, H1
Kallakury, B1
Tucker, RD1
Smith, JP1
Ganesh, PS1
Vishnupriya, S1
Vadivelu, J1
Mariappan, V1
Vellasamy, KM1
Shankar, EM1
Jarc, E1
Petan, T1
Yuan, S1
Liu, H1
Yuan, D2
Xu, J1
Chen, Y2
Xu, X1
Xu, F1
Liang, H1
de Oliveira, C1
Khatua, B1
Noel, P2
Kostenko, S1
Bag, A1
Balakrishnan, B1
Patel, KS1
Guerra, AA1
Martinez, MN1
Trivedi, S1
McCullough, A1
Lam-Himlin, DM1
Navina, S2
Faigel, DO1
Fukami, N1
Pannala, R1
Phillips, AE1
Papachristou, GI1
Kershaw, EE4
Lowe, ME1
Singh, VP2
Criscuolo, D1
Avolio, R1
Calice, G1
Laezza, C1
Paladino, S1
Navarra, G1
Maddalena, F1
Crispo, F1
Pagano, C1
Bifulco, M1
Landriscina, M1
Matassa, DS1
Esposito, F1
Tu, HJ1
Zhao, CF1
Chen, ZW1
Lin, W1
Jiang, YC1
Hong, C1
Deng, R1
Wang, P2
Lu, X1
Zhao, X1
Wang, X2
Cai, R1
Lin, J1
Gao, Y2
Hou, L1
Guo, S1
Jiang, Y1
Duan, G1
Zhang, Y5
Xu, Z1
Che, L1
Sun, C1
Li, S1
Zhang, S2
Sun, T2
Li, Y4
Lim, MA1
Pranata, R1
Jabłońska, J1
Kluska, M1
Lin, XJ1
Liu, R1
Li, C1
Yi, X1
Fu, B1
Walker, MJ1
Xu, XM1
Sun, G1
Lin, CH1
Lan, NSR1
Yeap, BB1
Fegan, PG1
Green, G1
Rankin, JM1
Dwivedi, G1
Habibi, A1
Karami, S1
Varmira, K1
Hadadi, M1
Zhang, M1
Li, Q1
Lan, X1
Li, X2
Wang, Z1
Zheng, J1
Eskandari-Sedighi, G1
Cortez, LM1
Yang, J3
Daude, N1
Shmeit, K1
Sim, V1
Westaway, D1
Weigand, S1
O'Connor, M1
Blažek, P1
Kantenwein, V1
Friedrich, L1
Grebmer, C1
Schaarschmidt, C1
von Olshausen, G1
Reents, T1
Deisenhofer, I1
Lennerz, C1
Kolb, C1
Iwata, H1
Sassa, N1
Kato, M1
Murase, Y1
Seko, S1
Kawanishi, H1
Hattori, R1
Gotoh, M1
Tsuzuki, T1
Chen, D1
Zhang, J2
Chen, YP1
Zhou, M1
Waterhouse, GIN1
Sun, J2
Shi, W1
Ai, S1
Manne, ASN1
Hegde, AR1
Raut, SY1
Rao, RR1
Kulkarni, VI1
Mutalik, S1
Jafari, R1
Hectors, SJ1
Koehne de González, AK1
Spincemaille, P1
Prince, MR1
Brittenham, GM1
Kuscher, S1
Kiehl, T1
Kronberger, IE1
Moser, P1
Maier, H1
Maier, S1
Hautz, T1
Öfner, D1
Schneeberger, S1
Troppmair, J1
Xu, T1
Sheng, L1
Guo, X1
Ding, Z1
Shi, Y1
Yang, C1
Ma, H1
Huang, R1
Li, Z2
Wang, M1
Wang, Q1
Ma, J1
Xiong, X1
Yu, JE1
Han, SY1
Wolfson, B1
Zhou, Q1
Qi, H1
Lu, Q1
Yin, C1
Xiao, H1
Wen, Y1
Cui, Q1
Yang, W1
Pierce, AA1
Duwaerts, CC1
Siao, K1
Mattis, AN1
Goodsell, A1
Baron, JL1
Maher, JJ1
Luo, F1
Huang, WY1
Guo, Y1
Ruan, GY1
Peng, R1
Li, XP1
Wilson, SK1
Knoll, LJ1
Xia, JY1
Sun, K1
Hepler, C1
Ghaben, AL1
Gupta, RK1
An, YA1
Holland, WL1
Morley, TS1
Adams, AC1
Gordillo, R1
Kusminski, CM1
Scherer, PE1
Rein-Fischboeck, L1
Haberl, EM1
Pohl, R1
Schmid, V1
Feder, S1
Krautbauer, S1
Liebisch, G1
Buechler, C1
Kotzbeck, P1
Giordano, A1
Mondini, E1
Murano, I1
Severi, I1
Venema, W1
Cecchini, MP1
Barbatelli, G1
Haemmerle, G2
Zechner, R2
Cinti, S1
Babaei, R1
Schuster, M1
Meln, I1
Lerch, S1
Ghandour, RA1
Pisani, DF1
Bayindir-Buchhalter, I1
Marx, J1
Wu, S1
Schoiswohl, G2
Billeter, AT1
Krunic, D1
Mauer, J1
Lee, YH1
Granneman, JG1
Fischer, L1
Müller-Stich, BP1
Amri, EZ1
Heikenwälder, M1
Herzig, S1
Vegiopoulos, A1
Wenzel, TJ1
Klegeris, A1
Erukainure, OL1
Narainpersad, N1
Singh, M1
Olakunle, S1
Islam, MS1
Sodhi, CP1
Fulton, WB1
Good, M1
Vurma, M1
Das, T1
Lai, CS1
Jia, H1
Yamaguchi, Y1
Lu, P1
Prindle, T1
Ozolek, JA1
Hackam, DJ1
Tang, W1
Zhao, Z1
Chong, Y1
Wu, C1
Liu, Q3
Zhou, R1
Lian, ZX1
Liang, G1
Hu, SH1
Guang, Y1
Wang, WX1
Xu, N1
Deng, W1
He, G1
Gan, X1
Gao, S1
Xu, K2
Qi, J1
Lin, H1
Shen, L1
Hu, Z1
Winsö, O1
Kral, J1
Wang, W2
Kralova, I1
Abrahamsson, P1
Johansson, G1
Blind, PJ1
Aparecida Braga, M1
Silva de Abreu, T1
Cardoso Trento, MV1
Henrique Andrade Machado, G1
Lopes Silva Pereira, L1
Assaid Simão, A1
Marcussi, S1
Mosca, A1
De Cosmi, V1
Parazzini, F1
Raponi, M1
Alisi, A1
Agostoni, C1
Nobili, V1
Li, J1
Gong, L1
Liu, S1
Zhang, C2
Tian, M1
Lu, H1
Bu, P1
Ouyang, C1
Jiang, X1
Wu, J1
Min, Q1
Zhang, W1
Pang, J1
Rhodes, DH1
Pini, M1
Akasheh, RT1
Castellanos, KJ1
Cabay, RJ1
Cooper, D1
Perretti, M1
Fantuzzi, G1
Ohira, H1
Fujioka, Y1
Katagiri, C1
Mamoto, R1
Aoyama-Ishikawa, M1
Amako, K1
Izumi, Y1
Nishiumi, S1
Yoshida, M2
Usami, M1
Ikeda, M1
Razzaghi, H1
Tempczyk-Russell, A1
Haubold, K1
Santorico, SA1
Shokati, T1
Christians, U1
Churchill, ME1
Vincent, M1
Philippe, E1
Everard, A1
Kassis, N1
Rouch, C1
Denom, J1
Takeda, Y1
Uchiyama, S1
Delzenne, NM1
Cani, PD1
Migrenne, S1
Magnan, C1
Cao, J1
Lettieri Barbato, D1
Aquilano, K1
Baldelli, S1
Cannata, SM1
Bernardini, S1
Rotilio, G1
Ciriolo, MR1
Suguna, P1
Geetha, A1
Aruna, R1
Siva, GV1
Parmeggiani, F1
Sorrentino, FS1
Romano, MR1
Costagliola, C1
Semeraro, F1
Incorvaia, C1
D'Angelo, S1
Perri, P1
De Nadai, K1
Bonomo Roversi, E1
Franceschelli, P1
Sebastiani, A1
Rubini, M1
Jha, P1
Knopf, A1
Koefeler, H1
Mueller, M1
Lackner, C1
Hoefler, G1
Claudel, T1
Trauner, M1
Zhou, HF1
Yan, H1
Hu, Y2
Springer, LE1
Yang, X3
Wickline, SA1
Pan, D1
Lanza, GM1
Pham, CT1
Marzuillo, P1
Grandone, A1
Conte, M1
Capuano, F1
Cirillo, G1
Di Sessa, A1
Umano, GR1
Romano, R1
Perrone, L1
del Giudice, EM1
Patel, K1
Trivedi, RN1
Durgampudi, C1
Cline, RA1
DeLany, JP1
Ramanadham, S1
Ali, T1
Ashley, JW1
Bone, RN1
Hancock, WD1
Lei, X1
Liu, Z1
Liu, W1
Huang, Y1
Guo, J1
Zhao, R1
Stefanovic-Racic, M1
Menke, MN1
Wills, RC1
Surlow, BA1
Basantani, MK1
Sitnick, MT1
Cai, L1
Yazbeck, CF1
Stolz, DB1
Pulinilkunnil, T1
O'Doherty, RM1
Andrés-Blasco, I1
Herrero-Cervera, A1
Vinué, Á1
Martínez-Hervás, S1
Piqueras, L1
Sanz, MJ1
Burks, DJ1
González-Navarro, H1
Gao, C1
Guo, N1
Li, N1
Peng, X1
Luo, M1
Fu, YJ1
Lord, CC1
Ferguson, D1
Thomas, G1
Brown, AL1
Schugar, RC1
Burrows, A1
Gromovsky, AD1
Betters, J1
Neumann, C1
Sacks, J1
Marshall, S1
Watts, R1
Schweiger, M1
Lee, RG1
Crooke, RM1
Graham, MJ1
Lathia, JD1
Sakaguchi, TF1
Lehner, R1
Brown, JM1
Wong, CR1
Nguyen, MH1
Lim, JK1
Panpetch, W1
Spinler, JK1
Versalovic, J1
Tumwasorn, S1
Yang, Z1
Ji, H1
Shi, XC1
Du, ZY1
Chen, LQ1
Kuang, J1
Shen, J3
Pu, S1
Cheng, S1
Chen, L1
Li, H1
Wu, T1
Li, R1
Zou, M1
Zhang, Z1
Jiang, W1
Xu, G1
Qu, A1
Xie, W1
He, J1
Zhang, ML1
Jiang, YF1
Wang, XR1
Ding, LL1
Wang, HJ1
Meng, QQ1
Gao, PJ1
DeSantis, P1
Coleman, T1
Schiekofer, S1
Nawroth, PP1
Schlimmer, P1
Schneider, JG1
Fujii, H1
Fukuda, A1
Tanaka, M1
Kojima, Y2
Ishida, T4
Hirata, K5
Fukagawa, M1
Yamaguchi, I1
Hamada, K1
Isayama, H1
Kanazashi, S1
Takeuchi, K1
Qiu, G2
Hill, JS2
Fitzner, B1
Holzhueter, SA1
Ibrahim, S1
Nizze, H1
Jaster, R1
Chen, X1
Pan, J1
Wang, L1
Huang, J1
Qian, HY1
Li, ZZ1
Zhang, JM1
Wang, S1
Tao, Y1
Gao, YL1
Yin, CQ1
Que, B1
Zhao, ZY1
Hara, T2
Tanaka, H1
Yasuda, T2
Shinohara, M2
Toh, R2
Küpeli, E1
Ulubay, G1
Ulasli, SS1
Sahin, T1
Erayman, Z1
Gürsoy, A1
Wroblewski, JM1
Jahangiri, A1
Ji, A1
de Beer, FC1
van der Westhuyzen, DR1
Webb, NR1
Seyednejad, H1
Gawlitta, D1
Kuiper, RV1
de Bruin, A1
van Nostrum, CF1
Vermonden, T1
Dhert, WJ1
Hennink, WE1
Santana, DG1
Santos, CA1
Santos, AD1
Nogueira, PC1
Thomazzi, SM1
Estevam, CS1
Antoniolli, AR1
Camargo, EA1
Chavan, SS1
Hudson, LK1
Li, JH1
Ochani, M1
Harris, Y1
Patel, NB1
Katz, D1
Scheinerman, JA1
Pavlov, VA1
Tracey, KJ1
Miyashita, M1
Ito, T1
Sakaki, M1
Kajiwara, A1
Nozawa, H1
Hiroishi, K1
Kobayashi, M1
Kumada, H1
Imawari, M1
Ozkok, A1
Elcioglu, OC1
Cukadar, T1
Bakan, A1
Sasak, G1
Atilgan, KG1
Alisir, S1
Kanbay, M1
Covic, A1
Odabas, AR1
Radovic, B1
Aflaki, E1
Kratky, D1
Sun, L1
Okada, T1
Yamashita, T1
Rikitake, Y1
Ni, J1
Hu, G1
Xiong, J1
Yang, L1
Tang, M1
Zhao, Y1
Ying, G1
Yu, G1
Xing, M1
Wan, R1
Araújo, FA1
Rocha, MA1
Capettini, LS1
Campos, PP1
Ferreira, MA1
Lemos, VS1
Andrade, SP1
Cuzzocrea, S2
Mazzon, E2
Dugo, L1
Centorrino, T1
Ciccolo, A1
McDonald, MC1
de Sarro, A1
Caputi, AP1
Thiemermann, C1
Virlos, I1
Serraino, I1
Di Paola, R1
Genovese, T1
Britti, D1
Thiemerman, C1
Siriwardena, A1
Vasseur, S1
Folch-Puy, E1
Hlouschek, V1
Garcia, S1
Fiedler, F1
Lerch, MM1
Dagorn, JC1
Closa, D1
Iovanna, JL1
Broedl, UC1
Jin, W1
Rader, DJ3
Kumar, R1
Chen, MH1
Parmar, VS1
Samuelson, LA1
Kumar, J1
Nicolosi, R1
Yoganathan, S1
Watterson, AC1
Kojma, Y1
Shimokawa, Y1
Inoue, N1
Kawashima, S1
Quertermous, T1
Yokoyama, M1
Glawe, C1
Emmrich, J1
Sparmann, G1
Vollmar, B1
Mareninova, OA1
Sung, KF1
Hong, P1
Lugea, A1
Pandol, SJ1
Gukovsky, I1
Gukovskaya, AS1
Hasham, SN1
Pillarisetti, S1
Paradis, ME2
Badellino, KO2
Deshaies, Y1
Couture, P1
Archer, WR1
Bergeron, N1
Lamarche, B2
Ho, AC1
Yu, W1
Rahman, SM1
Schroeder-Gloeckler, JM1
Janssen, RC1
Jiang, H1
Qadri, I1
Maclean, KN1
Friedman, JE1
Prokazova, NV1
Samovilova, NN1
Golovanova, NK1
Gracheva, EV1
Korotaeva, AA1
Andreeva, ER1
Wolfe, ML1
Reilly, MP1
Wittel, UA1
Wiech, T1
Chakraborty, S1
Boss, B1
Lauch, R1
Batra, SK1
Hopt, UT1
Holland, KT1
Ingham, E1
Cunliffe, WJ1
Aoyama, T1
Ino, Y1
Ozeki, M1
Oda, M1
Sato, T1
Koshiyama, Y1
Suzuki, S1
Fujita, M1
Dentan, C1
Lesnik, P1
Chapman, MJ1
Ninio, E1
Drachenberg, C1
Klassen, D1
Bartlett, S1
Hoehn-Saric, E1
Schweitzer, E1
Johnson, L1
Weir, M1
Papadimitriou, J1
König, B1
Jaeger, KE1
Sage, AE1
Vasil, ML1
König, W1
Keim, V1
Hoffmeister, A1
Teich, N1
Halm, U1
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Badosa, F1
Sola, A1
Roselló Catafau, J1
Xaus, C1
Prats, N1
Gelpí, E1
Hotter, G1
Ordovas, JM1
Shen, H1
Lonon, MK1
Woods, DE1
Straus, DC1
Koiwai, T1
Oguchi, H1
Kawa, S1
Yanagisawa, Y1
Kobayashi, T1
Homma, T1
Soloway, HB1
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Hufnagel, HV1
Wanke, M1
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Gerhard, W1
Rassner, G1

Clinical Trials (3)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
A Phase 1/2 Trial to Test the Safety of a CCK Receptor Antagonist, Proglumide, in Management of Chronic Pancreatitis Symptoms and Pain for 12 to 24 Months[NCT05551858]Phase 1/Phase 232 participants (Anticipated)Interventional2022-11-17Recruiting
Association of Anesthesia Technique With Morbidity and Mortality in Patients With COVID-19 and Surgery for Hip Fracture: a Retrospective Population Cohort Study[NCT05133648]1,000 participants (Anticipated)Observational2023-01-05Active, not recruiting
Inflammation and the Metabolic Syndrome in Humans[NCT00954824]50 participants (Actual)Interventional2003-08-31Completed
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Trial Outcomes

The Primary Outcome Measure is Plasma Levels of TNF Alpha.

(NCT00954824)
Timeframe: 24 hours

Interventionng/mL (Mean)
Endotoxin (LPS)507

Reviews

21 reviews available for 1-anilino-8-naphthalenesulfonate and Innate Inflammatory Response

ArticleYear
Update on Non-Alcoholic Fatty Liver Disease-Associated Single Nucleotide Polymorphisms and Their Involvement in Liver Steatosis, Inflammation, and Fibrosis: A Narrative Review
    Iranian biomedical journal, 2022, 07-01, Volume: 26, Issue:4

    Topics: Fibronectins; Fibrosis; Genetic Predisposition to Disease; Humans; Inflammation; Interleukin-6; Lipa

2022
Plant Extracts and Reactive Oxygen Species as Two Counteracting Agents with Anti- and Pro-Obesity Properties.
    International journal of molecular sciences, 2019, Sep-14, Volume: 20, Issue:18

    Topics: Adipocytes; Animals; Anti-Obesity Agents; Antioxidants; Energy Metabolism; Humans; Inflammation; Lip

2019
Intracellular survival and innate immune evasion of Burkholderia cepacia: Improved understanding of quorum sensing-controlled virulence factors, biofilm, and inhibitors.
    Microbiology and immunology, 2020, Volume: 64, Issue:2

    Topics: Animals; Biofilms; Burkholderia cepacia; Burkholderia cepacia complex; Burkholderia Infections; Comm

2020
A twist of FATe: Lipid droplets and inflammatory lipid mediators.
    Biochimie, 2020, Volume: 169

    Topics: Adipose Tissue; Animals; Docosahexaenoic Acids; Eicosanoids; Gene Expression Regulation; Homeostasis

2020
LIPG: an inflammation and cancer modulator.
    Cancer gene therapy, 2021, Volume: 28, Issue:1-2

    Topics: Humans; Inflammation; Lipase; Neoplasms

2021
The role of endothelial lipase in lipid metabolism, inflammation, and cancer.
    Histology and histopathology, 2018, Volume: 33, Issue:1

    Topics: Animals; Cell Transformation, Neoplastic; Energy Metabolism; Gene Expression Regulation, Enzymologic

2018
Patatin-like phospholipases in microbial infections with emerging roles in fatty acid metabolism and immune regulation by Apicomplexa.
    Molecular microbiology, 2018, Volume: 107, Issue:1

    Topics: Amino Acid Sequence; Animals; Antigens, Human Platelet; Apicomplexa; Fatty Acids; Humans; Inflammati

2018
Novel multi-target directed ligand-based strategies for reducing neuroinflammation in Alzheimer's disease.
    Life sciences, 2018, Aug-15, Volume: 207

    Topics: Alzheimer Disease; Amyloid beta-Peptides; Animals; Anti-Inflammatory Agents; Cathepsin B; Dinoprosto

2018
Mechanism of inflammation in age-related macular degeneration: an up-to-date on genetic landmarks.
    Mediators of inflammation, 2013, Volume: 2013

    Topics: Aging; Cholesterol; Chromosome Mapping; Complement System Proteins; Genetic Variation; Homeostasis;

2013
Calcium-independent phospholipases A2 and their roles in biological processes and diseases.
    Journal of lipid research, 2015, Volume: 56, Issue:9

    Topics: Alternative Splicing; Amino Acid Motifs; Calcium; Central Nervous System Diseases; Humans; Inflammat

2015
Hepatocellular carcinoma in patients with non-alcoholic fatty liver disease.
    World journal of gastroenterology, 2016, Oct-07, Volume: 22, Issue:37

    Topics: Adiponectin; Carcinoma, Hepatocellular; Disease Progression; Humans; Immune System; Inflammation; Li

2016
Endothelial Lipase: a key player in HDL metabolism modulates inflammation and atherosclerotic risk.
    Mini reviews in medicinal chemistry, 2008, Volume: 8, Issue:6

    Topics: Animals; Atherosclerosis; Endothelium; Humans; Inflammation; Lipase; Lipoproteins, HDL; Risk Factors

2008
Role of endothelial lipase in atherosclerosis.
    Translational research : the journal of laboratory and clinical medicine, 2010, Volume: 156, Issue:1

    Topics: Atherosclerosis; Gene Expression Regulation, Enzymologic; Humans; Inflammation; Lipase; Lipoproteins

2010
Adipose triglyceride lipase in immune response, inflammation, and atherosclerosis.
    Biological chemistry, 2012, Volume: 393, Issue:9

    Topics: Adipose Tissue; Animals; Atherosclerosis; Disease Models, Animal; Humans; Inflammation; Lipase; Lipo

2012
Endothelial lipase: a modulator of lipoprotein metabolism upregulated by inflammation.
    Trends in cardiovascular medicine, 2004, Volume: 14, Issue:5

    Topics: Humans; Inflammation; Lipase; Lipoproteins

2004
[Role of endothelial lipase in lipid metabolism and atherosclerosis].
    Seikagaku. The Journal of Japanese Biochemical Society, 2005, Volume: 77, Issue:9

    Topics: Animals; Atherosclerosis; Binding Sites; Cell Adhesion Molecules; Cholesterol, HDL; Cloning, Molecul

2005
Vascular lipases, inflammation and atherosclerosis.
    Clinica chimica acta; international journal of clinical chemistry, 2006, Volume: 372, Issue:1-2

    Topics: Atherosclerosis; Blood Vessels; Endothelium, Vascular; Humans; Inflammation; Lipase; Lipolysis; Live

2006
Endothelial lipase and the metabolic syndrome.
    Current opinion in lipidology, 2007, Volume: 18, Issue:3

    Topics: Animals; Cholesterol Ester Transfer Proteins; Humans; Hypertension; Inflammation; Lipase; Lipoprotei

2007
Lipid second messengers and cell signaling in vascular wall.
    Biochemistry. Biokhimiia, 2007, Volume: 72, Issue:8

    Topics: Animals; Atherosclerosis; Humans; Inflammation; Lipase; Lipid Metabolism; Lipids; Muscle, Smooth, Va

2007
A review, the microbiology of acne.
    The Journal of applied bacteriology, 1981, Volume: 51, Issue:2

    Topics: Acne Vulgaris; Antibodies, Bacterial; Chemotaxis, Leukocyte; Complement Activation; Fatty Acids, Non

1981
Pharmacogenetics of Lipid-lowering Therapies.
    Current atherosclerosis reports, 2002, Volume: 4, Issue:3

    Topics: Apolipoproteins E; Aryldialkylphosphatase; ATP Binding Cassette Transporter 1; ATP-Binding Cassette

2002

Trials

1 trial available for 1-anilino-8-naphthalenesulfonate and Innate Inflammatory Response

ArticleYear
Pancreatic triglyceride lipase mediates lipotoxic systemic inflammation.
    The Journal of clinical investigation, 2020, 04-01, Volume: 130, Issue:4

    Topics: Acute Disease; Adipocytes; Animals; Fatty Acids, Nonesterified; Female; Humans; Inflammation; Intra-

2020

Other Studies

93 other studies available for 1-anilino-8-naphthalenesulfonate and Innate Inflammatory Response

ArticleYear
Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
    Current protocols in cytometry, 2010, Volume: Chapter 13

    Topics: Animals; Biotinylation; Flow Cytometry; Fluorescence Resonance Energy Transfer; Green Fluorescent Pr

2010
Ghee Butter from Bovine Colostrum Reduces Inflammation in the Mouse Model of Acute Pancreatitis with Potential Involvement of Free Fatty Acid Receptors.
    Nutrients, 2021, Sep-19, Volume: 13, Issue:9

    Topics: Amylases; Animals; Anti-Inflammatory Agents; Arginine; Cattle; Colostrum; Cytokines; Disease Models,

2021
The anti-inflammatory mechanism of SAHA in acute pancreatitis through HDAC5/SLIT2/Akt/β-catenin axis.
    Human molecular genetics, 2022, 06-22, Volume: 31, Issue:12

    Topics: Acute Disease; Animals; Anti-Inflammatory Agents; beta Catenin; Histone Deacetylases; Inflammation;

2022
PNPLA3 rs738409 and risk of fibrosis in NAFLD: Exploring mediation pathways through intermediate histological features.
    Hepatology (Baltimore, Md.), 2022, Volume: 76, Issue:5

    Topics: Fibrosis; Genetic Predisposition to Disease; Humans; Inflammation; Lipase; Liver; Membrane Proteins;

2022
Hepatic patatin-like phospholipase domain-containing 3 levels are increased in I148M risk allele carriers and correlate with NAFLD in humans.
    Hepatology communications, 2022, Volume: 6, Issue:10

    Topics: Acyltransferases; Alleles; Animals; Fibrosis; Humans; Inflammation; Lipase; Membrane Proteins; Non-a

2022
Cardiomyocyte p38 MAPKα suppresses a heart-adipose tissue-neutrophil crosstalk in heart failure development.
    Basic research in cardiology, 2022, 10-07, Volume: 117, Issue:1

    Topics: Adipose Tissue; Angiotensin II; Animals; Cardiomegaly; Fatty Acids; Heart Failure; Inflammation; Lip

2022
    Nutrients, 2022, Nov-04, Volume: 14, Issue:21

    Topics: Animals; Ascophyllum; Cholesterol; Diet; Fucus; Hyperlipidemias; Hypolipidemic Agents; Inflammation;

2022
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
    Ulusal travma ve acil cerrahi dergisi = Turkish journal of trauma & emergency surgery : TJTES, 2022, Volume: 28, Issue:12

    Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6;

2022
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
    Ulusal travma ve acil cerrahi dergisi = Turkish journal of trauma & emergency surgery : TJTES, 2022, Volume: 28, Issue:12

    Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6;

2022
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
    Ulusal travma ve acil cerrahi dergisi = Turkish journal of trauma & emergency surgery : TJTES, 2022, Volume: 28, Issue:12

    Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6;

2022
Intraductal botulinum toxin injection suppressed the inflammation in experimental acute pancreatitis.
    Ulusal travma ve acil cerrahi dergisi = Turkish journal of trauma & emergency surgery : TJTES, 2022, Volume: 28, Issue:12

    Topics: Acute Disease; Amylases; Animals; Botulinum Toxins; Glucagon; Inflammation; Insulins; Interleukin-6;

2022
Effects of bile salt-stimulated lipase on blood cells and associations with disease activity in human inflammatory joint disorders.
    PloS one, 2023, Volume: 18, Issue:8

    Topics: Animals; Blood Cells; Cohort Studies; Female; Humans; Inflammation; Lactation; Lipase; Mice; Mice, K

2023
Cholecystokinin Receptor Antagonist Therapy Decreases Inflammation and Fibrosis in Chronic Pancreatitis.
    Digestive diseases and sciences, 2020, Volume: 65, Issue:5

    Topics: Animals; Ceruletide; Chronic Disease; Disease Models, Animal; Fibrosis; Inflammation; Lipase; Mice;

2020
PNPLA3 I148M mediates the regulatory effect of NF-kB on inflammation in PA-treated HepG2 cells.
    Journal of cellular and molecular medicine, 2020, Volume: 24, Issue:2

    Topics: Base Sequence; Binding Sites; Endoplasmic Reticulum Stress; Endoribonucleases; Gene Expression Regul

2020
Cholesterol Homeostasis Modulates Platinum Sensitivity in Human Ovarian Cancer.
    Cells, 2020, 03-30, Volume: 9, Issue:4

    Topics: Cell Line, Tumor; Cholesterol; Cisplatin; Drug Resistance, Neoplasm; Female; Homeostasis; HSP90 Heat

2020
Fibroblast Growth Factor (FGF) Signaling Protects Against Acute Pancreatitis-Induced Damage by Modulating Inflammatory Responses.
    Medical science monitor : international medical journal of experimental and clinical research, 2020, Apr-13, Volume: 26

    Topics: Acute Disease; Adult; Amylases; Animals; C-Reactive Protein; Case-Control Studies; Dinoprostone; Fem

2020
Octreotide alleviates pancreatic damage caused by paraquat in rats by reducing inflammatory responses and oxidative stress.
    Environmental toxicology and pharmacology, 2020, Volume: 80

    Topics: Amylases; Animals; Gene Expression; Inflammation; Interleukin-6; Lipase; Male; Octreotide; Oxidative

2020
    Journal of clinical orthopaedics and trauma, 2021, Volume: 12, Issue:1

    Topics: Acute Coronary Syndrome; Adolescent; Adsorption; Adult; Aged; Animals; Aspergillus; Aspergillus oryz

2021
Distal Pancreatic Resection with Splenectomy in the Rat: A Pancreatic Fistula Model to Investigate Postsurgical Damage?
    European surgical research. Europaische chirurgische Forschung. Recherches chirurgicales europeennes, 2021, Volume: 62, Issue:2

    Topics: Amylases; Animals; Inflammation; Ki-67 Antigen; Lipase; Necrosis; Pancreas; Pancreatic Fistula; Panc

2021
Free Fatty Acid Increases the Expression of NLRP3-Caspase1 in Adipose Tissue Macrophages in Obese Severe Acute Pancreatitis.
    Digestive diseases and sciences, 2022, Volume: 67, Issue:6

    Topics: Acute Disease; Adipose Tissue; Animals; Caspase 1; Ceruletide; Fatty Acids, Nonesterified; Inflammas

2022
Adipocyte-specific deletion of Depdc5 exacerbates insulin resistance and adipose tissue inflammation in mice.
    Biochemical and biophysical research communications, 2021, 09-10, Volume: 569

    Topics: Adipocytes; Adipogenesis; Adipose Tissue; Age Factors; Animals; Blotting, Western; Diet, High-Fat; G

2021
Exogenous leptin protects rat models of sodium taurocholate‑induced severe acute pancreatitis through endocrinal and immunological pathways.
    Molecular medicine reports, 2017, Volume: 16, Issue:5

    Topics: Acute Disease; Amylases; Animals; Blood Glucose; Disease Models, Animal; Inflammation; Interleukin-1

2017
CD18 deficiency improves liver injury in the MCD model of steatohepatitis.
    PloS one, 2017, Volume: 12, Issue:9

    Topics: Adipose Tissue; Animals; CD18 Antigens; Choline; Cytokines; Disease Models, Animal; Fatty Liver; Hep

2017
17β-estradiol lowers triglycerides in adipocytes via estrogen receptor α and it may be attenuated by inflammation.
    Lipids in health and disease, 2017, Sep-25, Volume: 16, Issue:1

    Topics: 3T3-L1 Cells; Adipocytes; Animals; Cell Differentiation; Estradiol; Estrogen Antagonists; Estrogen R

2017
Acute loss of adipose tissue-derived adiponectin triggers immediate metabolic deterioration in mice.
    Diabetologia, 2018, Volume: 61, Issue:4

    Topics: Adipocytes; Adiponectin; Adipose Tissue; Animals; Blood Glucose; Gene Deletion; Gene Expression Prof

2018
Alpha-syntrophin null mice are protected from non-alcoholic steatohepatitis in the methionine-choline-deficient diet model but not the atherogenic diet model.
    Biochimica et biophysica acta. Molecular and cell biology of lipids, 2018, Volume: 1863, Issue:5

    Topics: Adipocytes; Adiponectin; Adiposity; Animals; Body Weight; Calcium-Binding Proteins; Cell Size; Choli

2018
Brown adipose tissue whitening leads to brown adipocyte death and adipose tissue inflammation.
    Journal of lipid research, 2018, Volume: 59, Issue:5

    Topics: Adipose Tissue, Brown; Adipose Tissue, White; Animals; Cell Death; Inflammation; Lipase; Mice; Mice,

2018
Jak-TGFβ cross-talk links transient adipose tissue inflammation to beige adipogenesis.
    Science signaling, 2018, 04-24, Volume: 11, Issue:527

    Topics: Adipocytes, Beige; Adipogenesis; Adipose Tissue; Animals; Cell Differentiation; Cells, Cultured; Fem

2018
Clerodendrum volubile inhibits key enzymes linked to type 2 diabetes but induces cytotoxicity in human embryonic kidney (HEK293) cells via exacerbated oxidative stress and proinflammation.
    Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie, 2018, Volume: 106

    Topics: Adenosine Triphosphate; Amylases; Apoptosis; Biomarkers; Blood Glucose; Cell Survival; Clerodendrum;

2018
Fat composition in infant formula contributes to the severity of necrotising enterocolitis.
    The British journal of nutrition, 2018, Volume: 120, Issue:6

    Topics: Animals; Animals, Newborn; Diet; Dietary Fats; Digestion; Enterocolitis, Necrotizing; Enterocytes; F

2018
Tandem Enzymatic Self-Assembly and Slow Release of Dexamethasone Enhances Its Antihepatic Fibrosis Effect.
    ACS nano, 2018, 10-23, Volume: 12, Issue:10

    Topics: Alkaline Phosphatase; Animals; Anti-Inflammatory Agents, Non-Steroidal; Ascomycota; Dexamethasone; F

2018
Protective Effects of Calcitonin Gene-Related Peptide-Mediated p38 Mitogen-Activated Protein Kinase Pathway on Severe Acute Pancreatitis in Rats.
    Digestive diseases and sciences, 2019, Volume: 64, Issue:2

    Topics: Acute Disease; Amylases; Animals; Calcitonin Gene-Related Peptide; Cytokines; Disease Progression; E

2019
Alpha- and gamma-mangostins exhibit anti-acne activities via multiple mechanisms.
    Immunopharmacology and immunotoxicology, 2018, Volume: 40, Issue:5

    Topics: Acne Vulgaris; Anti-Bacterial Agents; Cell Line; Cell Proliferation; Cell Survival; Cytokines; Dose-

2018
Thoracic epidural anaesthesia reduces insulin resistance and inflammatory response in experimental acute pancreatitis.
    Upsala journal of medical sciences, 2018, Volume: 123, Issue:4

    Topics: Acute Disease; Anesthesia, Epidural; Animals; Disease Models, Animal; Female; Hemodynamics; Inflamma

2018
Prospection of Enzyme Modulators in Aqueous and Ethanolic Extracts of Lippia sidoides Leaves: Genotoxicity, Digestion, Inflammation, and Hemostasis.
    Chemistry & biodiversity, 2019, Volume: 16, Issue:3

    Topics: alpha-Amylases; Blood Coagulation; Ethanol; Glycoside Hydrolases; Hemostasis; Humans; Inflammation;

2019
The Role of Genetic Predisposition, Programing During Fetal Life, Family Conditions, and Post-natal Diet in the Development of Pediatric Fatty Liver Disease.
    The Journal of pediatrics, 2019, Volume: 211

    Topics: Birth Weight; Breast Feeding; Child; Child Nutritional Physiological Phenomena; Child, Preschool; Fa

2019
Adipose HuR protects against diet-induced obesity and insulin resistance.
    Nature communications, 2019, 05-30, Volume: 10, Issue:1

    Topics: Adipocytes; Adipose Tissue; Adipose Tissue, White; Animals; Cell Enlargement; Diet, High-Fat; ELAV-L

2019
Increased adiposity, dysregulated glucose metabolism and systemic inflammation in Galectin-3 KO mice.
    PloS one, 2013, Volume: 8, Issue:2

    Topics: Adiponectin; Adiposity; Animals; Diet; Fibroblast Growth Factors; Galectin 3; Glucose; Glucose Toler

2013
Butyrate attenuates inflammation and lipolysis generated by the interaction of adipocytes and macrophages.
    Journal of atherosclerosis and thrombosis, 2013, Volume: 20, Issue:5

    Topics: 3T3-L1 Cells; Adipocytes; Animals; Butyrates; Cell Line; Chemokine CCL2; Coculture Techniques; Fatty

2013
Genetic and structure-function studies of missense mutations in human endothelial lipase.
    PloS one, 2013, Volume: 8, Issue:3

    Topics: Alleles; Amino Acid Sequence; Cholesterol; Cholesterol, HDL; Colorado; Enzyme Activation; Genetic As

2013
Dietary supplementation with Agaricus blazei murill extract prevents diet-induced obesity and insulin resistance in rats.
    Obesity (Silver Spring, Md.), 2013, Volume: 21, Issue:3

    Topics: Agaricus; Animals; Biomarkers; Blood Glucose; Body Composition; Calorimetry, Indirect; Diet, High-Fa

2013
Protective effects of sivelestat in a caerulein-induced rat acute pancreatitis model.
    Inflammation, 2013, Volume: 36, Issue:6

    Topics: Amylases; Animals; Antioxidants; Ceruletide; Corticosterone; Disease Models, Animal; Glycine; Inflam

2013
Proline oxidase-adipose triglyceride lipase pathway restrains adipose cell death and tissue inflammation.
    Cell death and differentiation, 2014, Volume: 21, Issue:1

    Topics: 3T3-L1 Cells; Adipose Tissue; Animals; Apoptosis; Diet; Forkhead Box Protein O1; Forkhead Transcript

2014
Effect of thymoquinone on ethanol and high fat diet induced chronic pancreatitis--a dose response study in rats.
    Indian journal of experimental biology, 2013, Volume: 51, Issue:4

    Topics: Animals; Antioxidants; Benzoquinones; Body Weight; Diet, High-Fat; Dose-Response Relationship, Drug;

2013
Role of adipose tissue in methionine-choline-deficient model of non-alcoholic steatohepatitis (NASH).
    Biochimica et biophysica acta, 2014, Volume: 1842, Issue:7

    Topics: Adipogenesis; Adipose Tissue; Animals; Choline; Disease Models, Animal; Fatty Acids; Fatty Acids, No

2014
Fumagillin prodrug nanotherapy suppresses macrophage inflammatory response via endothelial nitric oxide.
    ACS nano, 2014, Jul-22, Volume: 8, Issue:7

    Topics: AMP-Activated Protein Kinases; Angiogenesis Inhibitors; Animals; Arthritis; Cyclohexanes; Cytokines;

2014
Novel association between a nonsynonymous variant (R270H) of the G-protein-coupled receptor 120 and liver injury in children and adolescents with obesity.
    Journal of pediatric gastroenterology and nutrition, 2014, Volume: 59, Issue:4

    Topics: Adipose Tissue; Adolescent; Alanine Transaminase; Alleles; Child; Child, Preschool; Fatty Acids, Uns

2014
Lipolysis of visceral adipocyte triglyceride by pancreatic lipases converts mild acute pancreatitis to severe pancreatitis independent of necrosis and inflammation.
    The American journal of pathology, 2015, Volume: 185, Issue:3

    Topics: 3T3-L1 Cells; Adipocytes; Animals; Ceruletide; Enzyme Inhibitors; Inflammation; Intra-Abdominal Fat;

2015
Lipopolysaccharide significantly influences the hepatic triglyceride metabolism in growing pigs.
    Lipids in health and disease, 2015, Jun-30, Volume: 14

    Topics: Acetyl-CoA Carboxylase; Animals; DNA, Mitochondrial; Gene Expression Regulation; Inflammation; Lipas

2015
Impact of Reduced ATGL-Mediated Adipocyte Lipolysis on Obesity-Associated Insulin Resistance and Inflammation in Male Mice.
    Endocrinology, 2015, Volume: 156, Issue:10

    Topics: Adipocytes; Adipose Tissue; Animals; Antigens, Differentiation; CD11c Antigen; Dendritic Cells; Diet

2015
Hepatic lipase deficiency produces glucose intolerance, inflammation and hepatic steatosis.
    The Journal of endocrinology, 2015, Volume: 227, Issue:3

    Topics: Animals; Blood Glucose; Chemokine CCL2; Diet, High-Fat; Dyslipidemias; Glucose Intolerance; Inflamma

2015
Investigation of antibacterial activity of aspidin BB against Propionibacterium acnes.
    Archives of dermatological research, 2016, Volume: 308, Issue:2

    Topics: Acne Vulgaris; Anti-Bacterial Agents; Bacterial Proteins; Cell Membrane Permeability; DNA Fragmentat

2016
Regulation of Hepatic Triacylglycerol Metabolism by CGI-58 Does Not Require ATGL Co-activation.
    Cell reports, 2016, 07-26, Volume: 16, Issue:4

    Topics: 1-Acylglycerol-3-Phosphate O-Acyltransferase; Adipocytes; Animals; Diglycerides; Fatty Liver; Hepato

2016
Characterization of Lactobacillus salivarius strains B37 and B60 capable of inhibiting IL-8 production in Helicobacter pylori-stimulated gastric epithelial cells.
    BMC microbiology, 2016, 10-18, Volume: 16, Issue:1

    Topics: alpha-Amylases; Anti-Inflammatory Agents; Cell Line; Culture Media, Conditioned; Endopeptidase K; Ep

2016
Pigment epithelium-derived factor improves TNFα-induced hepatic steatosis in grass carp (Ctenopharyngodon idella).
    Developmental and comparative immunology, 2017, Volume: 71

    Topics: Animals; Carps; Cloning, Molecular; Eye Proteins; Fatty Liver; Fish Diseases; Fish Proteins; Gene Ex

2017
Fat-Specific Sirt6 Ablation Sensitizes Mice to High-Fat Diet-Induced Obesity and Insulin Resistance by Inhibiting Lipolysis.
    Diabetes, 2017, Volume: 66, Issue:5

    Topics: Adipocytes; Adipose Tissue; Adipose Tissue, White; Adult; Animals; Blotting, Western; Cell Enlargeme

2017
Different phenotypes of monocytes in patients with new-onset mild acute pancreatitis.
    World journal of gastroenterology, 2017, Feb-28, Volume: 23, Issue:8

    Topics: Acute Disease; Adult; Amylases; Antigens, CD; Antigens, Differentiation, Myelomonocytic; C-Reactive

2017
Putative role of endothelial lipase in dialysis patients with hypoalbuminemia and inflammation.
    American journal of nephrology, 2008, Volume: 28, Issue:6

    Topics: Aged; Atherosclerosis; Cholesterol, HDL; Disease Progression; Female; Humans; Hypoalbuminemia; Infla

2008
Risperidone attenuates local and systemic inflammatory responses to ameliorate diet-induced severe necrotic pancreatitis in mice: it may provide a new therapy for acute pancreatitis.
    The Journal of pharmacology and experimental therapeutics, 2009, Volume: 328, Issue:1

    Topics: Acute Disease; Amylases; Animals; Anti-Inflammatory Agents; Choline Deficiency; Ethionine; Female; I

2009
Endothelial lipase promotes apolipoprotein AI-mediated cholesterol efflux in THP-1 macrophages.
    Arteriosclerosis, thrombosis, and vascular biology, 2009, Volume: 29, Issue:1

    Topics: Apolipoprotein A-I; Atherosclerosis; ATP Binding Cassette Transporter, Subfamily B; ATP Binding Cass

2009
Interferon-gamma treatment accelerates and aggravates autoimmune pancreatitis in the MRL/Mp-mouse.
    Pancreatology : official journal of the International Association of Pancreatology (IAP) ... [et al.], 2009, Volume: 9, Issue:3

    Topics: alpha-Amylases; Animals; Autoimmune Diseases; CD4-Positive T-Lymphocytes; CD8-Positive T-Lymphocytes

2009
Degradation behaviors of bioabsorbable P3/4HB monofilament suture in vitro and in vivo.
    Journal of biomedical materials research. Part B, Applied biomaterials, 2010, Volume: 92, Issue:2

    Topics: Absorbable Implants; Animals; Biocompatible Materials; Catgut; Female; Hydroxybutyrates; Inflammatio

2010
Targeted deletion of endothelial lipase increases HDL particles with anti-inflammatory properties both in vitro and in vivo.
    Journal of lipid research, 2011, Volume: 52, Issue:1

    Topics: Animals; Anti-Inflammatory Agents; Corticosterone; Cytokines; Endothelium; Inflammation; Lipase; Lip

2011
Metabolic syndrome is associated with increased risk of acute exacerbation of COPD: a preliminary study.
    Endocrine, 2010, Volume: 38, Issue:1

    Topics: Acute Disease; Aged; C-Reactive Protein; Case-Control Studies; Female; Humans; Inflammation; Lipase;

2010
Nascent HDL formation by hepatocytes is reduced by the concerted action of serum amyloid A and endothelial lipase.
    Journal of lipid research, 2011, Volume: 52, Issue:12

    Topics: Animals; Chlorocebus aethiops; Cholesterol, HDL; COS Cells; Hepatocytes; Humans; Inflammation; Lipas

2011
In vivo biocompatibility and biodegradation of 3D-printed porous scaffolds based on a hydroxyl-functionalized poly(ε-caprolactone).
    Biomaterials, 2012, Volume: 33, Issue:17

    Topics: Actins; Animals; Biocompatible Materials; Biodegradation, Environmental; Female; Hydroxylation; Infl

2012
Beneficial effects of the ethanol extract of Caesalpinia pyramidalis on the inflammatory response and abdominal hyperalgesia in rats with acute pancreatitis.
    Journal of ethnopharmacology, 2012, Jul-13, Volume: 142, Issue:2

    Topics: Abdominal Pain; Acute Disease; Amylases; Analgesics; Animals; Anti-Inflammatory Agents; Brazil; Caes

2012
Identification of pigment epithelium-derived factor as an adipocyte-derived inflammatory factor.
    Molecular medicine (Cambridge, Mass.), 2012, Oct-24, Volume: 18

    Topics: 3T3-L1 Cells; Adipocytes; Animals; Eye Proteins; Humans; Inflammation; Inflammation Mediators; Insul

2012
Genetic polymorphism in cyclooxygenase-2 promoter affects hepatic inflammation and fibrosis in patients with chronic hepatitis C.
    Journal of viral hepatitis, 2012, Volume: 19, Issue:9

    Topics: Asian People; Cyclooxygenase 2; Disease Progression; Female; Genetic Predisposition to Disease; Hepa

2012
Low serum pancreatic enzyme levels predict mortality and are associated with malnutrition-inflammation-atherosclerosis syndrome in patients with chronic kidney disease.
    International urology and nephrology, 2013, Volume: 45, Issue:2

    Topics: alpha-Amylases; Atherosclerosis; Cross-Sectional Studies; Female; Humans; Inflammation; Lipase; Male

2013
Expression of endothelial lipase correlates with the size of neointima in a murine model of vascular remodeling.
    Journal of atherosclerosis and thrombosis, 2012, Volume: 19, Issue:12

    Topics: Angiotensin II; Animals; Carotid Artery, Common; Cell Adhesion; Cell Movement; Cell Proliferation; D

2012
Involvement of interleukin-17A in pancreatic damage in rat experimental acute necrotizing pancreatitis.
    Inflammation, 2013, Volume: 36, Issue:1

    Topics: Acinar Cells; Amylases; Animals; Chemokine CXCL1; Chemokine CXCL2; Chemokine CXCL5; Inflammation; In

2013
3-Hydroxy-3-methylglutaryl coenzyme A reductase inhibitor (fluvastatin) decreases inflammatory angiogenesis in mice.
    APMIS : acta pathologica, microbiologica, et immunologica Scandinavica, 2013, Volume: 121, Issue:5

    Topics: Acetylglucosaminidase; Animals; Chemokine CCL2; Cholesterol; Fatty Acids, Monounsaturated; Fluvastat

2013
Absence of endogenous interleukin-6 enhances the inflammatory response during acute pancreatitis induced by cerulein in mice.
    Cytokine, 2002, Jun-07, Volume: 18, Issue:5

    Topics: Amylases; Animals; Ceruletide; Enzyme-Linked Immunosorbent Assay; Immunohistochemistry; Inflammation

2002
Pyrrolidine dithiocarbamate reduces the severity of cerulein-induced murine acute pancreatitis.
    Shock (Augusta, Ga.), 2003, Volume: 20, Issue:6

    Topics: Amylases; Animals; Antioxidants; Blotting, Western; Ceruletide; Edema; I-kappa B Proteins; Immunohis

2003
p8 improves pancreatic response to acute pancreatitis by enhancing the expression of the anti-inflammatory protein pancreatitis-associated protein I.
    The Journal of biological chemistry, 2004, Feb-20, Volume: 279, Issue:8

    Topics: Alleles; Amylases; Animals; Antigens, Neoplasm; Basic Helix-Loop-Helix Transcription Factors; Biomar

2004
Supramolecular assemblies based on copolymers of PEG600 and functionalized aromatic diesters for drug delivery applications.
    Journal of the American Chemical Society, 2004, Sep-01, Volume: 126, Issue:34

    Topics: Animals; Anti-Inflammatory Agents, Non-Steroidal; Aspirin; Chemistry, Pharmaceutical; Drug Delivery

2004
Endothelial lipase modulates monocyte adhesion to the vessel wall. A potential role in inflammation.
    The Journal of biological chemistry, 2004, Dec-24, Volume: 279, Issue:52

    Topics: Animals; Blotting, Northern; Cell Adhesion; Chlorocebus aethiops; COS Cells; Endothelial Cells; Gene

2004
In vivo characterization of developing chronic pancreatitis in rats.
    Laboratory investigation; a journal of technical methods and pathology, 2005, Volume: 85, Issue:2

    Topics: Amylases; Animals; Apoptosis; Bisbenzimidazole; Carboxylic Ester Hydrolases; Caspases; Chronic Disea

2005
Cell death in pancreatitis: caspases protect from necrotizing pancreatitis.
    The Journal of biological chemistry, 2006, Feb-10, Volume: 281, Issue:6

    Topics: Amylases; Animals; Apoptosis; Caspase 3; Caspase 7; Caspase 9; Caspases; Cell Death; Cell Membrane;

2006
Endothelial lipase is associated with inflammation in humans.
    Journal of lipid research, 2006, Volume: 47, Issue:12

    Topics: Adiposity; Adult; C-Reactive Protein; Group II Phospholipases A2; Humans; Inflammation; Interleukin-

2006
Suppression of endothelial or lipoprotein lipase in THP-1 macrophages attenuates proinflammatory cytokine secretion.
    Journal of lipid research, 2007, Volume: 48, Issue:2

    Topics: Base Sequence; Cell Line; Cytokines; Humans; Inflammation; Lipase; Lipoprotein Lipase; Lipoproteins,

2007
CCAAT/enhancing binding protein beta deletion in mice attenuates inflammation, endoplasmic reticulum stress, and lipid accumulation in diet-induced nonalcoholic steatohepatitis.
    Hepatology (Baltimore, Md.), 2007, Volume: 45, Issue:5

    Topics: Acute-Phase Reaction; Animals; Body Weight; CCAAT-Enhancer-Binding Protein-beta; Choline Deficiency;

2007
Endothelial lipase is increased in vivo by inflammation in humans.
    Circulation, 2008, Feb-05, Volume: 117, Issue:5

    Topics: Adiponectin; Biomarkers; C-Reactive Protein; Coronary Artery Disease; Endothelium, Vascular; Female;

2008
Taurocholate-induced pancreatitis: a model of severe necrotizing pancreatitis in mice.
    Pancreas, 2008, Volume: 36, Issue:2

    Topics: Albumins; Amylases; Animals; Bronchoalveolar Lavage Fluid; Ceruletide; Disease Models, Animal; Dose-

2008
Pharmacological studies of FUT-175, nafamstat mesilate. I. Inhibition of protease activity in in vitro and in vivo experiments.
    Japanese journal of pharmacology, 1984, Volume: 35, Issue:3

    Topics: Animals; Anti-Inflammatory Agents; Benzamidines; Complement Activation; Complement Inactivator Prote

1984
Phagocytic activation induces formation of platelet-activating factor in human monocyte-derived macrophages and in macrophage-derived foam cells. Relevance to the inflammatory reaction in atherogenesis.
    European journal of biochemistry, 1996, Feb-15, Volume: 236, Issue:1

    Topics: 1-Alkyl-2-acetylglycerophosphocholine Esterase; Acetyltransferases; Arteriosclerosis; Cells, Culture

1996
Histologic grading of pancreas acute allograft rejection in percutaneous needle biopsies.
    Transplantation proceedings, 1996, Volume: 28, Issue:1

    Topics: Amylases; Biomarkers; Biopsy, Needle; Graft Rejection; Humans; Inflammation; Lipase; Necrosis; Obser

1996
Role of Pseudomonas aeruginosa lipase in inflammatory mediator release from human inflammatory effector cells (platelets, granulocytes, and monocytes.
    Infection and immunity, 1996, Volume: 64, Issue:8

    Topics: 12-Hydroxy-5,8,10,14-eicosatetraenoic Acid; Basophils; Blood Platelets; Chemotaxis, Leukocyte; Enzym

1996
The pancreatitis-associated protein in hereditary and chronic alcoholic pancreatitis.
    Pancreas, 1999, Volume: 19, Issue:3

    Topics: Acute-Phase Proteins; Amino Acid Substitution; Amylases; Antigens, Neoplasm; Biomarkers, Tumor; C-Re

1999
Effects of adenosine on ischaemia-reperfusion injury associated with rat pancreas transplantation.
    The British journal of surgery, 2001, Volume: 88, Issue:10

    Topics: Adenosine; Animals; Graft Survival; Inflammation; Lipase; Male; Neutrophils; Nitric Oxide; Nucleotid

2001
The effects of purified 25-kDa lipase from a clinical isolate of Pseudomonas cepacia in the lungs of rats.
    Current microbiology, 1992, Volume: 25, Issue:2

    Topics: Animals; Bacterial Proteins; Bronchopneumonia; Burkholderia cepacia; Exudates and Transudates; Infla

1992
The role of oxygen free radicals in experimental acute pancreatitis in the rat.
    International journal of pancreatology : official journal of the International Association of Pancreatology, 1989, Volume: 5, Issue:2

    Topics: Acute Disease; Allopurinol; Amylases; Animals; Catalase; Disease Models, Animal; Free Radicals; Infl

1989
Resolution of experimental fat embolism.
    Archives of pathology, 1970, Volume: 90, Issue:3

    Topics: Animals; Embolism, Fat; Eosinophils; Inflammation; Iodine Radioisotopes; Lipase; Lung; Neutrophils;

1970
[Morphological findings in experimental acute pancreatitis].
    Tijdschrift voor gastro-enterologie, 1969, Volume: 12, Issue:2

    Topics: Animals; Bile Acids and Salts; Dogs; Inflammation; Lipase; Mast Cells; Necrosis; Oils; Pancreas; Pan

1969
[A simple method for separation of accelerated sedimentation caused by tumor and inflammation].
    Deutsche medizinische Wochenschrift (1946), 1966, Oct-21, Volume: 91, Issue:42

    Topics: Blood Proteins; Blood Sedimentation; Diagnosis, Differential; Humans; Inflammation; Lipase; Neoplasm

1966