Page last updated: 2024-10-16

choline and Acute Disease

choline has been researched along with Acute Disease in 63 studies

Acute Disease: Disease having a short and relatively severe course.

Research Excerpts

ExcerptRelevanceReference
" The patients had significantly reduced total choline and myo-inositol in the acute phase of Graves' thyrotoxicosis compared with the healthy volunteers."9.10Reduced myo-inositol and total choline measured with cerebral MRS in acute thyrotoxic Graves' disease. ( Danielsen, ER; Elberling, TV; Feldt-Rasmussen, U; Rasmussen, AK; Thomsen, C; Waldemar, G, 2003)
"A multicenter double-blind placebo-controlled study of cytidine 5'-diphosphocholine (CDP-choline) was conducted to evaluate possible clinical benefits of the drug in patients with acute, moderate to severe cerebral infarction."9.06Treatment of acute cerebral infarction with a choline precursor in a multicenter double-blind placebo-controlled study. ( Fujishima, M; Kameyama, M; Kutsuzawa, T; Omae, T; Otomo, E; Sakai, F; Sakuma, A; Tazaki, Y, 1988)
"Weanling rats fed a choline-deficient diet develop kidney oxidative damage, tubular and cortical kidney necrosis, renal failure and animal death."7.79The protective effect of menhaden oil in the oxidative damage and renal necrosis due to dietary choline deficiency. ( Boveris, A; Monserrat, AJ; Ossani, GP; Repetto, MG, 2013)
"Choline and creatine are commonly used as denominators for other metabolites in ischemic stroke spectroscopy, assuming that they do not change."7.74Choline and creatine are not reliable denominators for calculating metabolite ratios in acute ischemic stroke. ( Armitage, PA; Bastin, ME; Cvoro, V; Marshall, I; Muñoz Maniega, S; Wardlaw, JM, 2008)
"Young female mice were fed a choline-deficient ethionine (CDE) supplemented diet to induce acute pancreatitis."7.72Diminished lung injury with vascular adhesion molecule-1 blockade in choline-deficient ethionine diet-induced pancreatitis. ( Callicutt, CS; Fukatsu, K; Gaber, AO; Gaber, L; Kotb, M; Lundberg, AH; Sabek, O; Wilcox, H, 2003)
" We studied the effects of verapamil on pancreatic ultrastructure and zymogen extraction during diet-induced acute pancreatitis."7.69Dose-dependent effect of continuous subcutaneous verapamil infusion on experimental acute pancreatitis in mice. ( Lake-Bakaar, G; Lyubsky, S, 1995)
"This study was designed to evaluate the infectious factor in the pathogenesis of acute pancreatitis and the effects of a combination therapy with a new potent protease inhibitor, E-3123, and a broad spectrum antibiotic cefmetazole (CMZ) in mice with CDE diet-induced severe acute pancreatitis."7.68Improved survival in mice with diet-induced pancreatitis treated with new potent protease inhibitor, E-3123 and a broad spectrum antibiotic, cefmetazole. ( Hirano, T; Manabe, T; Nio, Y; Ohshio, G, 1992)
"The influence of several factors on the development of acute hemorrhagic pancreatitis (pancreatic necrosis) with fat necrosis in mice fed DL-ethionine with a choline-deficient diet has been investigated."7.65Acute hemorrhagic pancreatic necrosis in mice. Influence of the age and sex of the animals and of dietary ethionine, choline, methionine, and adenine sulfate. ( Lombardi, B; Rao, NK, 1975)
"Choline is a α7 nicotinic receptor agonist that has antinociceptive effects in a variety of pain models."5.37Pharmacological action of choline and aspirin coadministration on acute inflammatory pain. ( Hai, W; Hai-Tao, Y; Jin-Da, W; Ru-Huan, W; Xiang-Di, Z; Yong-Ping, S, 2011)
"When choline (2 mg/kg) was coadministered with aspirin (9."5.33Antinociceptive effects of choline against acute and inflammatory pain. ( Liu, Y; Su, DM; Wang, H; Wang, RH; Wang, Y, 2005)
" The patients had significantly reduced total choline and myo-inositol in the acute phase of Graves' thyrotoxicosis compared with the healthy volunteers."5.10Reduced myo-inositol and total choline measured with cerebral MRS in acute thyrotoxic Graves' disease. ( Danielsen, ER; Elberling, TV; Feldt-Rasmussen, U; Rasmussen, AK; Thomsen, C; Waldemar, G, 2003)
"A multicenter double-blind placebo-controlled study of cytidine 5'-diphosphocholine (CDP-choline) was conducted to evaluate possible clinical benefits of the drug in patients with acute, moderate to severe cerebral infarction."5.06Treatment of acute cerebral infarction with a choline precursor in a multicenter double-blind placebo-controlled study. ( Fujishima, M; Kameyama, M; Kutsuzawa, T; Omae, T; Otomo, E; Sakai, F; Sakuma, A; Tazaki, Y, 1988)
"Trimethylamine N-oxide (TMAO), a gut-related metabolite, is associated with heart failure (HF) outcomes."4.02Association of gut-related metabolites with outcome in acute heart failure. ( Bernieh, D; Cassambai, S; Heaney, LM; Israr, MZ; Jones, DJL; Ng, LL; Salzano, A; Suzuki, T; Yazaki, Y, 2021)
"Weanling rats fed a choline-deficient diet develop kidney oxidative damage, tubular and cortical kidney necrosis, renal failure and animal death."3.79The protective effect of menhaden oil in the oxidative damage and renal necrosis due to dietary choline deficiency. ( Boveris, A; Monserrat, AJ; Ossani, GP; Repetto, MG, 2013)
"Impaired function of the central gamma-aminobutyric acid (GABA) system, which provides the brain's major inhibitory pathways, is thought to play an important role in the pathophysiology of anxiety disorders."3.76Effect of acute psychological stress on prefrontal GABA concentration determined by proton magnetic resonance spectroscopy. ( Drevets, WC; Grillon, C; Hasler, G; Shen, J; van der Veen, JW, 2010)
"Choline and creatine are commonly used as denominators for other metabolites in ischemic stroke spectroscopy, assuming that they do not change."3.74Choline and creatine are not reliable denominators for calculating metabolite ratios in acute ischemic stroke. ( Armitage, PA; Bastin, ME; Cvoro, V; Marshall, I; Muñoz Maniega, S; Wardlaw, JM, 2008)
"Young female mice were fed a choline-deficient ethionine (CDE) supplemented diet to induce acute pancreatitis."3.72Diminished lung injury with vascular adhesion molecule-1 blockade in choline-deficient ethionine diet-induced pancreatitis. ( Callicutt, CS; Fukatsu, K; Gaber, AO; Gaber, L; Kotb, M; Lundberg, AH; Sabek, O; Wilcox, H, 2003)
"Hemorrhagic necrotizing pancreatitis and edematous pancreatitis were induced by the injection of taurocholic acid (TCA pancreatitis) and cerulein (cerulein pancreatitis), respectively, on male Wistar rats."3.72Macrophage migration inhibitory factor is a critical mediator of severe acute pancreatitis. ( Masamune, A; Nishihira, J; Sakai, Y; Satoh, A; Shimosegawa, T; Yamagiwa, T, 2003)
"Metabolite maps of choline-containing compounds, total creatine consisting of creatine and phosphocreatine, N-acetyl aspartate (NAA), and lactate were obtained in 23 patients with acute and subacute cerebral infarctions 1-35 days after onset of symptoms."3.69Metabolic changes in acute and subacute cerebral infarctions: findings at proton MR spectroscopic imaging. ( Heindel, W; Heiss, WD; Herholz, K; Kugel, H; Lackner, K; Lanfermann, H, 1995)
"Mechanism of the inhibitory effect of isoprenoid farnesol on cell proliferation has been studied in human acute leukemia CEM-C1 cells."3.69Mechanism of farnesol cytotoxicity: further evidence for the role of PKC-dependent signal transduction in farnesol-induced apoptotic cell death. ( Haug, JS; Melnykovych, G; Voziyan, PA, 1995)
" We studied the effects of verapamil on pancreatic ultrastructure and zymogen extraction during diet-induced acute pancreatitis."3.69Dose-dependent effect of continuous subcutaneous verapamil infusion on experimental acute pancreatitis in mice. ( Lake-Bakaar, G; Lyubsky, S, 1995)
"A lethal form of acute hemorrhagic necrotizing pancreatitis was induced in young female mice by feeding a choline-deficient, ethionine supplemented (CDE) diet for 72 hours."3.69Decreased mortality of severe acute pancreatitis after proximal cytokine blockade. ( Carey, LC; Fabri, PJ; Fink, GS; Franz, MG; Gower, WR; Messina, J; Norman, JG, 1995)
"The effect of FUT-175, a new synthetic trypsin inhibitor, was evaluated in a lethal model of acute hemorrhagic pancreatitis induced by feeding mice a choline-deficient, ethionine-supplemented diet (CDE diet)."3.68Effect of protease inhibitor FUT-175 on acute hemorrhagic pancreatitis in mice. ( Frey, CF; Isaji, S; Ruebner, B; Stanten, R; Suzuki, M, 1992)
"This study was designed to evaluate the infectious factor in the pathogenesis of acute pancreatitis and the effects of a combination therapy with a new potent protease inhibitor, E-3123, and a broad spectrum antibiotic cefmetazole (CMZ) in mice with CDE diet-induced severe acute pancreatitis."3.68Improved survival in mice with diet-induced pancreatitis treated with new potent protease inhibitor, E-3123 and a broad spectrum antibiotic, cefmetazole. ( Hirano, T; Manabe, T; Nio, Y; Ohshio, G, 1992)
"This study was performed to elucidate the role of bacterial infection in acute pancreatitis in young female mice fed a choline-deficient diet supplemented with 0."3.68Role of bacterial infection in diet-induced acute pancreatitis in mice. ( Carlson, J; Frey, CF; Isaji, S; Ruebner, B; Suzuki, M, 1992)
"The influence of several factors on the development of acute hemorrhagic pancreatitis (pancreatic necrosis) with fat necrosis in mice fed DL-ethionine with a choline-deficient diet has been investigated."3.65Acute hemorrhagic pancreatic necrosis in mice. Influence of the age and sex of the animals and of dietary ethionine, choline, methionine, and adenine sulfate. ( Lombardi, B; Rao, NK, 1975)
"A new experimental model has been found whereby acute hemorrhagic pancreatic necrosis with fat necrosis is induced in 100% of young female mice fed a choline-deficient diet supplemented with 0."3.65Acute hemorrhagic pancreatic necrosis in mice. Intraparenchymal activation of zymogens, and other enzyme changes in pancreas and serum. ( Lombardi, B; Rao, KN; Tuma, J, 1976)
"Choline was significantly elevated in acute lesions compared with controls (P < 0."2.70Proton MR spectroscopy with metabolite-nulling reveals elevated macromolecules in acute multiple sclerosis. ( Grodd, W; Klose, U; Mader, I; Melms, A; Naegele, T; Seeger, U; Weissert, R, 2001)
"Severe acute pancreatitis can easily lead to systemic inflammatory response syndrome and death."1.72USP25 Deficiency Exacerbates Acute Pancreatitis via Up-Regulating TBK1-NF-κB Signaling in Macrophages. ( Chen, J; Hu, C; Huang, L; Liang, G; Liu, X; Luo, W; Mutsinze, RN; Wang, X; Wang, Y; Zhang, Y; Zuo, W, 2022)
"Choline is a α7 nicotinic receptor agonist that has antinociceptive effects in a variety of pain models."1.37Pharmacological action of choline and aspirin coadministration on acute inflammatory pain. ( Hai, W; Hai-Tao, Y; Jin-Da, W; Ru-Huan, W; Xiang-Di, Z; Yong-Ping, S, 2011)
"The mortality associated with acute pancreatitis (AP) is largely attributable to abnormalities that occur in distant organs and supportive care remains the only treatment for patients with these complications."1.34Therapeutic treatment with poly(ADP-ribose) polymerase inhibitors attenuates the severity of acute pancreatitis and associated liver and lung injury. ( Berenguer-Pina, JJ; Hernández-Espinosa, D; Mota, R; Parrilla, P; Sánchez-Bueno, F; Yélamos, J, 2007)
"The choline level was not changed significantly by ischaemia (from 0."1.33Myocardial interstitial choline and glutamate levels during acute myocardial ischaemia and local ouabain administration. ( Akiyama, T; Kawada, T; Mori, H; Shishido, T; Sugimachi, M; Yamazaki, T, 2005)
"When choline (2 mg/kg) was coadministered with aspirin (9."1.33Antinociceptive effects of choline against acute and inflammatory pain. ( Liu, Y; Su, DM; Wang, H; Wang, RH; Wang, Y, 2005)
"In a mouse model of acute pancreatitis induced by a choline-deficient, ethionine (0."1.33Effects of R-102444 and its active metabolite R-96544, selective 5-HT2A receptor antagonists, on experimental acute and chronic pancreatitis: Additional evidence for possible involvement of 5-HT2A receptors in the development of experimental pancreatitis. ( Asai, F; Fujimoto, K; Fukushige, J; Ogawa, T; Sugidachi, A; Tanaka, N; Tani, Y, 2005)
"3 x 27 mg/kg (an empirical LD50 for mice) or 27 mg/kg divided by 1."1.31[Neurotoxicity in sodium azide poisoning]. ( Fujimura, T; Hara, S; Kobayashi, H; Sato, I; Suzuki, T, 2002)
"A completely noninvasive animal model of acute pancreatitis-associated lung injury was used to show that neutrophils, activated by pancreatitis, play a key role in mediating pancreatitis-associated lung injury."1.30The effects of neutrophil depletion on a completely noninvasive model of acute pancreatitis-associated lung injury. ( Bhatia, M; Frossard, JL; Hofbauer, B; Lee, HS; Saluja, AK; Steer, ML, 1998)
"Acute pancreatitis was induced in female mice fed a choline-deficient meal containing 0."1.28Changes of xanthine oxidase, lipid peroxide and superoxide dismutase in mouse acute pancreatitis. ( Asano, N; Imanishi, K; Manabe, T; Nonaka, A; Tamura, K; Tobe, T, 1989)

Research

Studies (63)

TimeframeStudies, this research(%)All Research%
pre-199019 (30.16)18.7374
1990's16 (25.40)18.2507
2000's20 (31.75)29.6817
2010's5 (7.94)24.3611
2020's3 (4.76)2.80

Authors

AuthorsStudies
Li, C1
Zhu, L1
Dai, Y1
Zhang, Z1
Huang, L2
Wang, TJ1
Fu, P1
Li, Y1
Wang, J1
Jiang, C1
Liu, X1
Luo, W1
Chen, J1
Hu, C1
Mutsinze, RN1
Wang, X2
Zhang, Y1
Zuo, W1
Liang, G1
Wang, Y2
Israr, MZ1
Bernieh, D1
Salzano, A1
Cassambai, S1
Yazaki, Y1
Heaney, LM1
Jones, DJL1
Ng, LL1
Suzuki, T2
Muñoz Maniega, S1
Cvoro, V1
Armitage, PA1
Marshall, I2
Bastin, ME1
Wardlaw, JM2
Gussew, A1
Rzanny, R1
Erdtel, M1
Scholle, HC1
Kaiser, WA1
Mentzel, HJ1
Reichenbach, JR1
Chang, KH1
Tsou, JC1
Chen, ST1
Ro, LS1
Lyu, RK1
Chang, HS1
Hsu, WC1
Chen, CM1
Wu, YR1
Chen, CJ1
Hasler, G1
van der Veen, JW1
Grillon, C1
Drevets, WC1
Shen, J1
Yong-Ping, S1
Jin-Da, W1
Ru-Huan, W1
Xiang-Di, Z1
Hai-Tao, Y1
Hai, W1
Ossani, GP1
Repetto, MG1
Boveris, A1
Monserrat, AJ1
Fujimura, T1
Kobayashi, H1
Sato, I1
Hara, S1
Elberling, TV1
Danielsen, ER1
Rasmussen, AK1
Feldt-Rasmussen, U1
Waldemar, G1
Thomsen, C1
Callicutt, CS1
Sabek, O1
Fukatsu, K1
Lundberg, AH1
Gaber, L1
Wilcox, H1
Kotb, M1
Gaber, AO1
Sakai, Y1
Masamune, A1
Satoh, A1
Nishihira, J1
Yamagiwa, T1
Shimosegawa, T1
Michael, N1
Erfurth, A1
Ohrmann, P1
Gössling, M1
Arolt, V1
Heindel, W2
Pfleiderer, B1
Fuller, RA1
Westmoreland, SV2
Ratai, E1
Greco, JB2
Kim, JP1
Lentz, MR2
He, J2
Sehgal, PK2
Masliah, E2
Halpern, E1
Lackner, AA2
González, RG2
Brownell, AL1
Chen, YI1
Yu, M1
Dedeoglu, A1
Cicchetti, F1
Jenkins, BG1
Beal, MF1
Ratai, EM1
Sakaie, K1
Frey, BN1
Folgierini, M1
Nicoletti, M1
Machado-Vieira, R1
Stanley, JA1
Soares, JC1
Kapczinski, F1
Srinivasan, R1
Sailasuta, N1
Hurd, R1
Nelson, S1
Pelletier, D1
Apple, FS1
Wu, AH1
Mair, J1
Ravkilde, J1
Panteghini, M1
Tate, J1
Pagani, F1
Christenson, RH1
Mockel, M1
Danne, O1
Jaffe, AS1
Su, DM1
Wang, RH1
Liu, Y1
Wang, H1
Kawada, T1
Yamazaki, T1
Akiyama, T1
Shishido, T1
Mori, H1
Sugimachi, M1
Ogawa, T1
Sugidachi, A1
Tanaka, N1
Fujimoto, K1
Fukushige, J1
Tani, Y1
Asai, F1
Melek, E1
Ozyer, U1
Erol, I1
Alehan, F1
Muhteşem Ağildere, A1
Mota, R1
Sánchez-Bueno, F1
Berenguer-Pina, JJ1
Hernández-Espinosa, D1
Parrilla, P1
Yélamos, J1
Ofek, K1
Krabbe, KS1
Evron, T1
Debecco, M1
Nielsen, AR1
Brunnsgaad, H1
Yirmiya, R1
Soreq, H1
Pedersen, BK1
Kayabas, U1
Alkan, A1
Firat, AK1
Karakas, HM1
Bayindir, Y1
Yetkin, F1
Mizuma, K1
Schröder, T1
Kaarne, M1
Korpela, H1
Lempinen, M1
Kosaka, A1
Benzi, G1
Arrigoni, E1
Pastoris, O1
Villa, RF1
Dossena, M1
Agnoli, A1
Giuffrida, AM1
Lake-Bakaar, G1
Lyubsky, S1
Voziyan, PA1
Haug, JS1
Melnykovych, G1
Mathews, VP1
Barker, PB1
Blackband, SJ1
Chatham, JC1
Bryan, RN1
Leach, SD1
Bilchik, AJ1
Karapetian, O1
Gorelick, FS1
Modlin, IM1
Lanfermann, H1
Kugel, H1
Herholz, K1
Heiss, WD1
Lackner, K1
Norman, JG1
Franz, MG1
Fink, GS1
Messina, J1
Fabri, PJ1
Gower, WR1
Carey, LC1
Gideon, P2
Henriksen, O3
Sperling, BK1
Christiansen, P3
Olsen, TS2
Jørgensen, HS2
Arlien-Søborg, P2
Wild, J1
Dennis, MS1
Cannon, J1
Lewis, SC1
Bhatia, M1
Saluja, AK1
Hofbauer, B1
Lee, HS1
Frossard, JL1
Steer, ML1
Mader, I1
Seeger, U1
Weissert, R1
Klose, U1
Naegele, T1
Melms, A1
Grodd, W1
Yamada, N1
Nakamura, K1
Zeze, F1
Ishii, K1
Fujimura, I1
Behmer, OA1
Fujimura, MD1
Penteado, S1
Ferrarini, E1
Lemos, PC1
Tolosa, EM1
Schneider-Reinkens, A1
Bykov, II1
Beliakov, KF1
Slobodin, AK1
Lombardi, B2
Rao, NK1
Rao, KN2
Tuma, J1
Suzuki, M2
Isaji, S2
Stanten, R1
Frey, CF2
Ruebner, B2
Sperling, B1
Hirano, T1
Manabe, T2
Ohshio, G1
Nio, Y1
Carlson, J1
Arnold, DL1
Matthews, PM1
Francis, GS1
O'Connor, J1
Antel, JP1
Larsson, HB1
Jensen, M1
Frederiksen, J1
Heltberg, A1
Olesen, J1
Luzhnikov, EA1
Savina, AS1
Sukhodolova, GA1
Nonaka, A1
Tamura, K1
Asano, N1
Imanishi, K1
Tobe, T1
Tazaki, Y1
Sakai, F1
Otomo, E1
Kutsuzawa, T1
Kameyama, M1
Omae, T1
Fujishima, M1
Sakuma, A1
Centrone, G1
Ragno, G1
Calicchio, G1
Virji, MA1
Hashihira, S1
Nishii, T1
Mori, R1
Takeda, Y1
Tai, J1
Szabb, L1
Marumoto, S2
Shiozu, N2
Tsuda, H2
Imai, Y2
Shimamura, O2
Yokoi, T1
Uemura, T1
Hashimoto, I1
Taneda, T1
Matsuyama, R1
Orrego-Matte, H1
Navia, E1
Feres, A1
Costamaillere, L1

Clinical Trials (1)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
Imaging Framework for Testing GABAergic/Glutamatergic Drugs in Bipolar Alcoholics[NCT03220776]Phase 254 participants (Actual)Interventional2017-08-07Completed
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Trial Outcomes

Prefrontal GABA+ Concentrations

Concentrations of GABA+, referenced to unsuppressed water and corrected for within-voxel CSF proportion, in dorsal anterior cingulate cortex measured via Proton Magnetic Resonance Spectroscopy (i.e., MEGA-PRESS). (NCT03220776)
Timeframe: Day 5 of each experimental condition

Interventionmmol/kg (Mean)
N-Acetylcysteine3.90
Gabapentin3.93
Placebo Oral Tablet3.73

Prefrontal Glx Concentrations

Concentrations of Glx (i.e., glutamate + glutamine), referenced to unsuppressed water and corrected for within-voxel CSF proportion, in dorsal anterior cingulate cortex measured via Proton Magnetic Resonance Spectroscopy. (NCT03220776)
Timeframe: Day 5 of each experimental condition

Interventionmmol/kg (Mean)
N-Acetylcysteine21.59
Gabapentin21.69
Placebo Oral Tablet22.25

Reviews

1 review available for choline and Acute Disease

ArticleYear
Future biomarkers for detection of ischemia and risk stratification in acute coronary syndrome.
    Clinical chemistry, 2005, Volume: 51, Issue:5

    Topics: Acute Disease; Albumins; Biomarkers; CD40 Ligand; Chest Pain; Choline; Coronary Disease; Diagnosis,

2005

Trials

4 trials available for choline and Acute Disease

ArticleYear
Reduced myo-inositol and total choline measured with cerebral MRS in acute thyrotoxic Graves' disease.
    Neurology, 2003, Jan-14, Volume: 60, Issue:1

    Topics: Acute Disease; Adult; Brain; Choline; Female; Frontal Lobe; Graves Disease; Humans; Inositol; Magnet

2003
Cholinergic status modulations in human volunteers under acute inflammation.
    Journal of molecular medicine (Berlin, Germany), 2007, Volume: 85, Issue:11

    Topics: Acetylcholinesterase; Acute Disease; Adult; Aged; Attention; Biomarkers; Butyrylcholinesterase; Chol

2007
Proton MR spectroscopy with metabolite-nulling reveals elevated macromolecules in acute multiple sclerosis.
    Brain : a journal of neurology, 2001, Volume: 124, Issue:Pt 5

    Topics: Acute Disease; Adrenal Cortex Hormones; Adult; Alanine; Amino Acids; Aspartic Acid; Biomarkers; Chol

2001
Treatment of acute cerebral infarction with a choline precursor in a multicenter double-blind placebo-controlled study.
    Stroke, 1988, Volume: 19, Issue:2

    Topics: Acute Disease; Adult; Aged; Aged, 80 and over; Cerebral Infarction; Choline; Clinical Trials as Topi

1988

Other Studies

58 other studies available for choline and Acute Disease

ArticleYear
Diet-Induced High Serum Levels of Trimethylamine-N-oxide Enhance the Cellular Inflammatory Response without Exacerbating Acute Intracerebral Hemorrhage Injury in Mice.
    Oxidative medicine and cellular longevity, 2022, Volume: 2022

    Topics: Acute Disease; Animals; Astrocytes; Brain Injuries; Cerebral Hemorrhage; Choline; Diet; Disease Mode

2022
USP25 Deficiency Exacerbates Acute Pancreatitis via Up-Regulating TBK1-NF-κB Signaling in Macrophages.
    Cellular and molecular gastroenterology and hepatology, 2022, Volume: 14, Issue:5

    Topics: Acute Disease; Animals; Arginine; Ceruletide; Choline; Cytokines; Deubiquitinating Enzymes; Disease

2022
Association of gut-related metabolites with outcome in acute heart failure.
    American heart journal, 2021, Volume: 234

    Topics: Acetylcarnitine; Acute Disease; Aged; Aged, 80 and over; Betaine; Carnitine; Choline; Female; Gastro

2021
Choline and creatine are not reliable denominators for calculating metabolite ratios in acute ischemic stroke.
    Stroke, 2008, Volume: 39, Issue:9

    Topics: Acute Disease; Aged; Aged, 80 and over; Biomarkers; Brain; Brain Ischemia; Choline; Creatine; Down-R

2008
Time-resolved functional 1H MR spectroscopic detection of glutamate concentration changes in the brain during acute heat pain stimulation.
    NeuroImage, 2010, Jan-15, Volume: 49, Issue:2

    Topics: Acute Disease; Adult; Aspartic Acid; Cerebral Cortex; Choline; Creatine; Glutamic Acid; Hot Temperat

2010
Temporal features of magnetic resonance imaging and spectroscopy in non-ketotic hyperglycemic chorea-ballism patients.
    European journal of neurology, 2010, Volume: 17, Issue:4

    Topics: Acute Disease; Aged; Basal Ganglia; Choline; Chorea; Creatine; Female; Follow-Up Studies; Functional

2010
Effect of acute psychological stress on prefrontal GABA concentration determined by proton magnetic resonance spectroscopy.
    The American journal of psychiatry, 2010, Volume: 167, Issue:10

    Topics: Acute Disease; Adult; Animals; Anxiety; Anxiety Disorders; Aspartic Acid; Choline; Diagnostic and St

2010
Pharmacological action of choline and aspirin coadministration on acute inflammatory pain.
    European journal of pain (London, England), 2011, Volume: 15, Issue:8

    Topics: Acute Disease; Analgesics; Animals; Aspirin; Choline; Disease Models, Animal; Drug Combinations; Fem

2011
The protective effect of menhaden oil in the oxidative damage and renal necrosis due to dietary choline deficiency.
    Food & function, 2013, Feb-26, Volume: 4, Issue:3

    Topics: Acute Disease; Animals; Choline; Choline Deficiency; Corn Oil; Creatinine; Diet; Dietary Supplements

2013
[Neurotoxicity in sodium azide poisoning].
    Chudoku kenkyu : Chudoku Kenkyukai jun kikanshi = The Japanese journal of toxicology, 2002, Volume: 15, Issue:3

    Topics: Acetylcholine; Acetylcholinesterase; Acute Disease; Animals; Behavior, Animal; Body Temperature; Cen

2002
Diminished lung injury with vascular adhesion molecule-1 blockade in choline-deficient ethionine diet-induced pancreatitis.
    Surgery, 2003, Volume: 133, Issue:2

    Topics: Acute Disease; Amylases; Animals; Antibodies, Monoclonal; Apoptosis; Choline; Diet; Ethionine; Immun

2003
Macrophage migration inhibitory factor is a critical mediator of severe acute pancreatitis.
    Gastroenterology, 2003, Volume: 124, Issue:3

    Topics: Acute Disease; Animals; Antibodies; Ascitic Fluid; Cholagogues and Choleretics; Choline; Ethionine;

2003
Acute mania is accompanied by elevated glutamate/glutamine levels within the left dorsolateral prefrontal cortex.
    Psychopharmacology, 2003, Volume: 168, Issue:3

    Topics: Acute Disease; Adult; Aspartic Acid; Bipolar Disorder; Choline; Creatine; Female; Glutamic Acid; Glu

2003
A prospective longitudinal in vivo 1H MR spectroscopy study of the SIV/macaque model of neuroAIDS.
    BMC neuroscience, 2004, Mar-05, Volume: 5

    Topics: Acute Disease; AIDS Dementia Complex; Animals; Aspartic Acid; Brain; Choline; Chronic Disease; Creat

2004
3-Nitropropionic acid-induced neurotoxicity--assessed by ultra high resolution positron emission tomography with comparison to magnetic resonance spectroscopy.
    Journal of neurochemistry, 2004, Volume: 89, Issue:5

    Topics: Acute Disease; Animals; Behavior, Animal; Body Weight; Brain; Choline; Chronic Disease; Disease Mode

2004
In vivo 1H MRS of brain injury and repair during acute SIV infection in the macaque model of neuroAIDS.
    Magnetic resonance in medicine, 2004, Volume: 51, Issue:6

    Topics: Acute Disease; AIDS Dementia Complex; Animals; Aspartic Acid; Brain; Choline; Creatine; Female; Fron

2004
A proton magnetic resonance spectroscopy investigation of the dorsolateral prefrontal cortex in acute mania.
    Human psychopharmacology, 2005, Volume: 20, Issue:2

    Topics: Acute Disease; Adult; Antimanic Agents; Antipsychotic Agents; Aspartic Acid; Bipolar Disorder; Choli

2005
Evidence of elevated glutamate in multiple sclerosis using magnetic resonance spectroscopy at 3 T.
    Brain : a journal of neurology, 2005, Volume: 128, Issue:Pt 5

    Topics: Acute Disease; Adult; Brain; Choline; Chronic Disease; Female; Glutamic Acid; Humans; Inositol; Magn

2005
Antinociceptive effects of choline against acute and inflammatory pain.
    Neuroscience, 2005, Volume: 132, Issue:1

    Topics: Aconitine; Acute Disease; alpha7 Nicotinic Acetylcholine Receptor; Analgesics; Animals; Anti-Inflamm

2005
Myocardial interstitial choline and glutamate levels during acute myocardial ischaemia and local ouabain administration.
    Acta physiologica Scandinavica, 2005, Volume: 184, Issue:3

    Topics: Acetylcholine; Acute Disease; Animals; Cats; Choline; Coronary Vessels; Enzyme Inhibitors; Glutamic

2005
Effects of R-102444 and its active metabolite R-96544, selective 5-HT2A receptor antagonists, on experimental acute and chronic pancreatitis: Additional evidence for possible involvement of 5-HT2A receptors in the development of experimental pancreatitis.
    European journal of pharmacology, 2005, Oct-03, Volume: 521, Issue:1-3

    Topics: Acute Disease; Amylases; Animals; Ceruletide; Choline; Chronic Disease; Dietary Supplements; Ethioni

2005
+H-proton-magnetic resonance spectroscopic findings in a patient with acute hemicerebellitis presenting without localized signs: a case report.
    European journal of paediatric neurology : EJPN : official journal of the European Paediatric Neurology Society, 2006, Volume: 10, Issue:4

    Topics: Acute Disease; Adolescent; Aspartic Acid; Cerebellar Diseases; Choline; Cranial Fossa, Posterior; Cr

2006
Therapeutic treatment with poly(ADP-ribose) polymerase inhibitors attenuates the severity of acute pancreatitis and associated liver and lung injury.
    British journal of pharmacology, 2007, Volume: 151, Issue:7

    Topics: Acute Disease; Alanine Transaminase; Amylases; Animals; Aspartate Aminotransferases; Choline; Dietar

2007
Magnetic resonance spectroscopy features of normal-appearing white matter in patients with acute brucellosis.
    European journal of radiology, 2008, Volume: 65, Issue:3

    Topics: Acute Disease; Adolescent; Adult; Aspartic Acid; Brain Diseases; Brucellosis; Case-Control Studies;

2008
Serum phospholipase A2 in diet-induced pancreatitis.
    European surgical research. Europaische chirurgische Forschung. Recherches chirurgicales europeennes, 1984, Volume: 16, Issue:3

    Topics: Acute Disease; Amylases; Animals; Choline; Diet; Disease Models, Animal; Ethionine; Female; Lipase;

1984
[Experimental studies on pathophysiology of acute pancreatitis, with special reference to pancreatic phospholipase A2 and the effect of CDP-choline].
    Nihon geka hokan. Archiv fur japanische Chirurgie, 1984, May-01, Volume: 53, Issue:3

    Topics: Acute Disease; Animals; Choline; Cytidine Diphosphate Choline; Dogs; Liver; Pancreatitis; Phospholip

1984
Drug action on the metabolic changes induced by acute hypoxia on synaptosomes from the cerebral cortex.
    Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism, 1982, Volume: 2, Issue:2

    Topics: Acute Disease; Animals; Cerebral Cortex; Choline; Cytidine Diphosphate Choline; Dogs; Female; Hypoxi

1982
Dose-dependent effect of continuous subcutaneous verapamil infusion on experimental acute pancreatitis in mice.
    Digestive diseases and sciences, 1995, Volume: 40, Issue:11

    Topics: Acute Disease; Animals; Calcium Channel Blockers; Choline; Cytoplasmic Granules; Dose-Response Relat

1995
Mechanism of farnesol cytotoxicity: further evidence for the role of PKC-dependent signal transduction in farnesol-induced apoptotic cell death.
    Biochemical and biophysical research communications, 1995, Jul-17, Volume: 212, Issue:2

    Topics: Acute Disease; Apoptosis; Cell Division; Choline; Diglycerides; DNA; Farnesol; Humans; Leukemia; Myr

1995
Cerebral metabolites in patients with acute and subacute strokes: concentrations determined by quantitative proton MR spectroscopy.
    AJR. American journal of roentgenology, 1995, Volume: 165, Issue:3

    Topics: Acute Disease; Adolescent; Adult; Aged; Aged, 80 and over; Aspartic Acid; Brain; Cerebrovascular Dis

1995
Influence of chloroquine on diet-induced pancreatitis.
    Pancreas, 1993, Volume: 8, Issue:1

    Topics: Acute Disease; Amylases; Animals; Chloroquine; Choline; Diet; Ethionine; Female; Hydrogen-Ion Concen

1993
Metabolic changes in acute and subacute cerebral infarctions: findings at proton MR spectroscopic imaging.
    Radiology, 1995, Volume: 196, Issue:1

    Topics: Acute Disease; Adult; Aged; Aged, 80 and over; Aspartic Acid; Brain; Cerebral Infarction; Choline; C

1995
Decreased mortality of severe acute pancreatitis after proximal cytokine blockade.
    Annals of surgery, 1995, Volume: 221, Issue:6

    Topics: Acute Disease; Animals; Choline; Cytokines; Ethionine; Female; Interleukin 1 Receptor Antagonist Pro

1995
[Magnetic resonance spectroscopy of acute cerebral infarctions].
    Ugeskrift for laeger, 1993, Oct-04, Volume: 155, Issue:40

    Topics: Acute Disease; Adult; Aged; Aspartic Acid; Cerebral Infarction; Choline; Creatine; Humans; Magnetic

1993
Studies of acute ischemic stroke with proton magnetic resonance spectroscopy: relation between time from onset, neurological deficit, metabolite abnormalities in the infarct, blood flow, and clinical outcome.
    Stroke, 1998, Volume: 29, Issue:8

    Topics: Acute Disease; Adult; Aged; Aged, 80 and over; Aspartic Acid; Brain; Brain Chemistry; Brain Edema; B

1998
The effects of neutrophil depletion on a completely noninvasive model of acute pancreatitis-associated lung injury.
    International journal of pancreatology : official journal of the International Association of Pancreatology, 1998, Volume: 24, Issue:2

    Topics: Acute Disease; Animals; Choline; Diet; Ethionine; Female; Immunization, Passive; Leukocyte Count; Lu

1998
[Therapeutic effects of CDP-choline and premarin in acute experimental pancreatitis].
    Nihon rinsho. Japanese journal of clinical medicine, 1976, Aug-10, Volume: 34, Issue:8

    Topics: Acute Disease; Animals; Choline; Cytidine Diphosphate Choline; Estrogens, Conjugated (USP); Male; Pa

1976
[Renal changes induced by the acute lack of choline in adult rats].
    AMB : revista da Associacao Medica Brasileira, 1978, Volume: 24, Issue:3

    Topics: Acute Disease; Animals; Choline; Choline Deficiency; Diet; Female; Kidney; Liver; Liver Regeneration

1978
[Therapeutic results with Hepsan in selected forms of hepatitis].
    MMW, Munchener medizinische Wochenschrift, 1977, Jun-24, Volume: 119, Issue:25

    Topics: Acute Disease; Choline; Chronic Disease; Drug Combinations; Female; Hepatitis; Humans; Lipid Metabol

1977
[Presystolic change in the length of the ischemic, border and distant myocardial areas in experimental coronary insufficiency and the action of inderal and metacin].
    Kardiologiia, 1979, Volume: 19, Issue:4

    Topics: Acute Disease; Animals; Benzilates; Choline; Coronary Disease; Diastole; Dogs; Drug Evaluation, Prec

1979
Acute hemorrhagic pancreatic necrosis in mice. Influence of the age and sex of the animals and of dietary ethionine, choline, methionine, and adenine sulfate.
    The American journal of pathology, 1975, Volume: 81, Issue:1

    Topics: Acute Disease; Adenine; Age Factors; Animals; Choline; Choline Deficiency; Diet; Ethionine; Female;

1975
Acute hemorrhagic pancreatic necrosis in mice. Intraparenchymal activation of zymogens, and other enzyme changes in pancreas and serum.
    Gastroenterology, 1976, Volume: 70, Issue:5 PT.1

    Topics: Acute Disease; Adipose Tissue; Amylases; Animals; Body Weight; Choline; Disease Models, Animal; Enzy

1976
Effect of protease inhibitor FUT-175 on acute hemorrhagic pancreatitis in mice.
    International journal of pancreatology : official journal of the International Association of Pancreatology, 1992, Volume: 11, Issue:1

    Topics: Acute Disease; Amylases; Animals; Benzamidines; Choline; Choline Deficiency; Diet; Ethionine; Female

1992
Early time course of N-acetylaspartate, creatine and phosphocreatine, and compounds containing choline in the brain after acute stroke. A proton magnetic resonance spectroscopy study.
    Stroke, 1992, Volume: 23, Issue:11

    Topics: Acute Disease; Adult; Aged; Aged, 80 and over; Aspartic Acid; Brain Chemistry; Cerebrovascular Circu

1992
Improved survival in mice with diet-induced pancreatitis treated with new potent protease inhibitor, E-3123 and a broad spectrum antibiotic, cefmetazole.
    Nihon geka hokan. Archiv fur japanische Chirurgie, 1992, May-01, Volume: 61, Issue:3

    Topics: Acute Disease; Animals; Cefmetazole; Chi-Square Distribution; Choline; Drug Therapy, Combination; Et

1992
Role of bacterial infection in diet-induced acute pancreatitis in mice.
    International journal of pancreatology : official journal of the International Association of Pancreatology, 1992, Volume: 11, Issue:1

    Topics: Acute Disease; Animals; Anti-Bacterial Agents; Bacterial Infections; Choline; Choline Deficiency; Di

1992
Proton magnetic resonance spectroscopic imaging for metabolic characterization of demyelinating plaques.
    Annals of neurology, 1992, Volume: 31, Issue:3

    Topics: Acute Disease; Adult; Aspartic Acid; Biopsy; Brain Chemistry; Brain Neoplasms; Choline; Creatine; De

1992
Localized in vivo proton spectroscopy in the brain of patients with multiple sclerosis.
    Magnetic resonance in medicine, 1991, Volume: 22, Issue:1

    Topics: Acute Disease; Adult; Aspartic Acid; Brain; Choline; Chronic Disease; Female; Humans; Lipid Metaboli

1991
[Acute klofelin poisoning].
    Klinicheskaia meditsina, 1990, Volume: 68, Issue:12

    Topics: Acute Disease; Adolescent; Adult; Antidotes; Atropine; Benzilates; Bradycardia; Child, Preschool; Ch

1990
Changes of xanthine oxidase, lipid peroxide and superoxide dismutase in mouse acute pancreatitis.
    Digestion, 1989, Volume: 43, Issue:1-2

    Topics: Acute Disease; Amylases; Animals; Choline; Ethionine; Female; Free Radicals; Lipid Peroxides; Mice;

1989
[Use of citicoline in high dosages in acute cerebrovascular disease].
    Minerva medica, 1986, Mar-17, Volume: 77, Issue:11

    Topics: Acute Disease; Aged; Brain Ischemia; Cerebral Hemorrhage; Choline; Coma; Consciousness; Cytidine Dip

1986
Acute hemorrhagic pancreatitis in mice: A study of glucoregulatory hormones and glucose metabolism.
    The American journal of pathology, 1985, Volume: 118, Issue:1

    Topics: Acute Disease; Animals; Blood Glucose; Body Weight; Choline; Female; Glucagon; Glucose; Hemorrhage;

1985
CDP-choline as a drug for pancreatitis.
    Bulletin of the Osaka Medical School, 1974, Volume: 20, Issue:1

    Topics: Acute Disease; Adult; Choline; Cytidine Diphosphate Choline; Female; Humans; Male; Middle Aged; Panc

1974
[Clinical treatment of acute and chronic liver diseases].
    Zeitschrift fur Allgemeinmedizin, 1972, Feb-10, Volume: 48, Issue:4

    Topics: Acute Disease; Choline; Chronic Disease; Fatty Liver; Hepatitis; Humans; Liver Diseases; Male; Methi

1972
[Effects of CDP-choline on EEG in experimental acute hypnotic poisoning].
    No to shinkei = Brain and nerve, 1968, Volume: 20, Issue:3

    Topics: Acute Disease; Animals; Barbiturates; Choline; Cytosine Nucleotides; Electroencephalography; Gluteth

1968
[Clinical experiences with CDP-choline in the treatment of acute hypnotic intoxication].
    Iryo, 1968, Volume: 22, Issue:7

    Topics: Acute Disease; Adolescent; Choline; Female; Humans; Hypnotics and Sedatives; Male; Middle Aged

1968
[Effect of CDP-choline on electroencephalogram of acute hypnotic poisoning].
    No to shinkei = Brain and nerve, 1968, Volume: 20, Issue:6

    Topics: Acute Disease; Adult; Barbiturates; Choline; Electroencephalography; Female; Glutethimide; Humans; H

1968
Ethanol ingestion and incorporation of 32P into phospholipids of pancreas in the rat.
    Gastroenterology, 1969, Volume: 56, Issue:2

    Topics: Acute Disease; Alcoholic Intoxication; Alcoholism; Animals; Choline; Chronic Disease; Depression, Ch

1969