triiodothyronine has been researched along with cyclosporine in 23 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 7 (30.43) | 18.2507 |
2000's | 7 (30.43) | 29.6817 |
2010's | 9 (39.13) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Barnes, JC; Bradley, P; Day, NC; Fourches, D; Reed, JZ; Tropsha, A | 1 |
Fisk, L; Greene, N; Naven, RT; Note, RR; Patel, ML; Pelletier, DJ | 1 |
Ekins, S; Williams, AJ; Xu, JJ | 1 |
Chen, M; Fang, H; Liu, Z; Shi, Q; Tong, W; Vijay, V | 1 |
Ambroso, JL; Ayrton, AD; Baines, IA; Bloomer, JC; Chen, L; Clarke, SE; Ellens, HM; Harrell, AW; Lovatt, CA; Reese, MJ; Sakatis, MZ; Taylor, MA; Yang, EY | 1 |
Fent, K; Popovic, M; Smital, T; Zaja, R | 1 |
Aleo, MD; Bonin, PD; Luo, Y; Potter, DM; Swiss, R; Will, Y | 1 |
Chen, M; Hu, C; Suzuki, A; Thakkar, S; Tong, W; Yu, K | 1 |
Flores, A; Little, GH | 1 |
Bar-Tana, J; Hermesh, O; Kalderon, B | 1 |
García, R; Henríquez-La Roche, C; Herrera, J; Rodríguez-Iturbe, B; Rubio, L; Salgado, O | 1 |
Shi, Y; Shi, YB; Su, Y | 1 |
Chopra, I; Eigler, FW; Jockenhövel, F; Mann, K; Misch, C; Philipp, T; Reinhardt, W; Reinwein, D; Wu, SY | 1 |
Shi, Y; Shi, YB; Stolow, MA; Su, Y | 1 |
Andersen, HO; Hansen, BF; Holm, P; Nordestgaard, BG; Stender, S | 1 |
Arita, K; Ishisaka, R; Kanno, T; Kashiwagi, A; Utsumi, K; Utsumi, T | 1 |
Hanada, H; Inoue, M; Kanno, T; Kashiwagi, A; Katsu, K; Sasaki, J; Sato, EF; Utsumi, K | 1 |
Caraccio, G; Greco, M; Guerrieri, F; Marra, E; Moro, L; Vacca, RA | 1 |
Bar-Tana, J; Kalderon, B; Yehuda-Shnaidman, E | 1 |
Jin, M; Miyamoto, K; Nomura, M; Shimada, T; Shintani, M; Yokogawa, K | 1 |
Inui, K; Katsura, T; Nishio, N | 1 |
Baldwin, KM; Bodell, PW; Haddad, F; Jiang, WH; Pandorf, CE; Qin, AX | 1 |
Abe, T; Goto, J; Hishinuma, T; Mano, N; Mikkaichi, T; Okada, M; Shimada, M; Sugie, M; Toyohara, T; Yamaguchi, H | 1 |
1 review(s) available for triiodothyronine and cyclosporine
Article | Year |
---|---|
DILIrank: the largest reference drug list ranked by the risk for developing drug-induced liver injury in humans.
Topics: Chemical and Drug Induced Liver Injury; Databases, Factual; Drug Labeling; Humans; Pharmaceutical Preparations; Risk | 2016 |
22 other study(ies) available for triiodothyronine and cyclosporine
Article | Year |
---|---|
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
Topics: Animals; Chemical and Drug Induced Liver Injury; Cluster Analysis; Databases, Factual; Humans; MEDLINE; Mice; Models, Chemical; Molecular Conformation; Quantitative Structure-Activity Relationship | 2010 |
Developing structure-activity relationships for the prediction of hepatotoxicity.
Topics: Chemical and Drug Induced Liver Injury; Databases, Factual; Humans; Structure-Activity Relationship; Tetracyclines; Thiophenes | 2010 |
A predictive ligand-based Bayesian model for human drug-induced liver injury.
Topics: Bayes Theorem; Chemical and Drug Induced Liver Injury; Humans; Ligands | 2010 |
FDA-approved drug labeling for the study of drug-induced liver injury.
Topics: Animals; Benchmarking; Biomarkers, Pharmacological; Chemical and Drug Induced Liver Injury; Drug Design; Drug Labeling; Drug-Related Side Effects and Adverse Reactions; Humans; Pharmaceutical Preparations; Reproducibility of Results; United States; United States Food and Drug Administration | 2011 |
Preclinical strategy to reduce clinical hepatotoxicity using in vitro bioactivation data for >200 compounds.
Topics: Chemical and Drug Induced Liver Injury; Cytochrome P-450 Enzyme Inhibitors; Cytochrome P-450 Enzyme System; Decision Trees; Drug Evaluation, Preclinical; Drug-Related Side Effects and Adverse Reactions; Glutathione; Humans; Liver; Pharmaceutical Preparations; Protein Binding | 2012 |
Molecular characterization of zebrafish Oatp1d1 (Slco1d1), a novel organic anion-transporting polypeptide.
Topics: Animals; Evolution, Molecular; Glycosylation; Gonadal Steroid Hormones; HEK293 Cells; Humans; Ion Transport; Organic Anion Transporters; Protein Multimerization; Zebrafish; Zebrafish Proteins | 2013 |
Human drug-induced liver injury severity is highly associated with dual inhibition of liver mitochondrial function and bile salt export pump.
Topics: Animals; ATP Binding Cassette Transporter, Subfamily B, Member 11; ATP-Binding Cassette Transporters; Chemical and Drug Induced Liver Injury; Humans; Male; Mitochondria, Liver; Rats; Rats, Sprague-Dawley; Severity of Illness Index | 2014 |
Inhibition of programmed cell death by cyclosporin.
Topics: Animals; Apoptosis; Cell Membrane; Chloroquine; Cyclosporine; Ethylmaleimide; Membrane Proteins; Rana catesbeiana; Superoxides; Triiodothyronine | 1992 |
Mitochondrial permeability transition is induced by in vivo thyroid hormone treatment.
Topics: Animals; Calcium; Cyclosporine; Egtazic Acid; Energy Metabolism; Hypothyroidism; Male; Mitochondria, Liver; NADP Transhydrogenases; Permeability; Rats; Reference Values; Temperature; Thyroid Hormones; Triiodothyronine | 1995 |
Effects of low-dose ketoconazole on thyroid hormones in renal transplant recipients.
Topics: Adult; Antifungal Agents; Azathioprine; Cyclosporine; Female; Humans; Immunosuppressive Agents; Ketoconazole; Kidney Transplantation; Male; Prednisone; Thyrotropin; Thyroxine; Triiodothyronine | 1996 |
Cyclosporin A but not FK506 inhibits thyroid hormone-induced apoptosis in tadpole intestinal epithelium.
Topics: Animals; Apoptosis; Cells, Cultured; Cyclosporine; DNA Fragmentation; Immunosuppressive Agents; Intestinal Mucosa; Nucleosomes; Tacrolimus; Triiodothyronine; Tumor Cells, Cultured; Xenopus laevis | 1997 |
Triiodothyronine (T3) reflects renal graft function after renal transplantation.
Topics: Acute Kidney Injury; Adult; Biomarkers; Cyclosporine; Female; Graft Rejection; Humans; Immunosuppressive Agents; Kidney; Kidney Transplantation; Male; Middle Aged; Postoperative Period; Prednisolone; Thyroid Gland; Thyrotropin; Thyroxine; Thyroxine-Binding Proteins; Triiodothyronine; Triiodothyronine, Reverse | 1997 |
Thyroid hormone induces apoptosis in primary cell cultures of tadpole intestine: cell type specificity and effects of extracellular matrix.
Topics: Animals; Apoptosis; Carrier Proteins; Cell Differentiation; Cell Division; Cells, Cultured; Cyclosporine; DNA Fragmentation; Extracellular Matrix; Fatty Acid-Binding Proteins; Fibroblasts; Gene Expression Regulation; Intestinal Mucosa; Intestine, Small; Kinetics; Larva; Models, Biological; Myelin P2 Protein; Neoplasm Proteins; Tacrolimus; Triiodothyronine; Xenopus laevis | 1997 |
Dose-dependent suppression of transplant arteriosclerosis in aorta-allografted, cholesterol-clamped rabbits. Suppression not eliminated by the cholesterol-raising effect of cyclosporine.
Topics: Animals; Aorta, Abdominal; Aorta, Thoracic; Aortic Diseases; Arteriosclerosis; Blood Vessel Prosthesis Implantation; Cholesterol; Cholesterol, Dietary; Cyclosporine; Dose-Response Relationship, Drug; Humans; Hypercholesterolemia; Immunosuppressive Agents; Male; Rabbits; Transplantation, Heterotopic; Transplantation, Homologous; Triiodothyronine | 1997 |
Suppression of T(3)- and fatty acid-induced membrane permeability transition by L-carnitine.
Topics: Animals; Arachidonic Acid; Biological Transport; Blotting, Western; Carnitine; Cyclosporine; Cytochrome c Group; Fatty Acids; Intracellular Membranes; Membrane Potentials; Mitochondria, Liver; Mitochondrial Swelling; Permeability; Rats; Serum Albumin, Bovine; Time Factors; Triiodothyronine | 2001 |
Cyclosporin A inhibits thyroid hormone-induced shortening of the tadpole tail through membrane permeability transition.
Topics: Amino Acid Sequence; Animals; Anura; bcl-2-Associated X Protein; Calcium; Caspase 3; Caspase 9; Caspases; Cyclosporine; DNA Fragmentation; Enzyme Activation; Humans; Ion Channels; Larva; Mitochondria, Liver; Mitochondrial Membrane Transport Proteins; Mitochondrial Permeability Transition Pore; Mitochondrial Swelling; Molecular Sequence Data; Morphogenesis; Proto-Oncogene Proteins; Proto-Oncogene Proteins c-bcl-2; Sequence Homology; Tail; Triiodothyronine | 2003 |
Thyroid hormone administration to hypothyroid rats restores the mitochondrial membrane permeability properties.
Topics: Animals; Aspartate Aminotransferases; Calcium; Cell Membrane Permeability; Cyclosporine; Enzyme Inhibitors; Glutamate Dehydrogenase; Hypothyroidism; Malate Dehydrogenase; Male; Membrane Fluidity; Mitochondria, Liver; Mitochondrial Swelling; Rats; Rats, Wistar; Triiodothyronine | 2003 |
Modulation of mitochondrial transition pore components by thyroid hormone.
Topics: Animals; bcl-2 Homologous Antagonist-Killer Protein; bcl-2-Associated X Protein; Cyclophilins; Cyclosporine; Gene Expression; HeLa Cells; Humans; Hypothyroidism; Intracellular Membranes; Ion Channel Gating; Isoenzymes; Jurkat Cells; Male; Membrane Potentials; Membrane Proteins; Mitochondria, Liver; Mitochondrial ADP, ATP Translocases; Peptidyl-Prolyl Isomerase F; Porins; Proto-Oncogene Proteins c-bcl-2; Rats; Transfection; Triiodothyronine; Voltage-Dependent Anion Channels | 2005 |
Long-term levothyroxine treatment decreases the oral bioavailability of cyclosporin A by inducing P-glycoprotein in small intestine.
Topics: Administration, Oral; Adolescent; Adult; Animals; ATP Binding Cassette Transporter, Subfamily B, Member 1; Biological Availability; Child; Child, Preschool; Cyclosporine; Drug Interactions; Electrophoresis, Polyacrylamide Gel; Female; Humans; Intestinal Absorption; Intestine, Small; Liver; Male; Middle Aged; Rats; Rats, Wistar; Reverse Transcriptase Polymerase Chain Reaction; RNA, Messenger; Thyrotropin; Thyroxine; Triiodothyronine | 2005 |
Thyroid hormone regulates the expression and function of P-glycoprotein in Caco-2 cells.
Topics: ATP Binding Cassette Transporter, Subfamily B, Member 1; Biological Transport, Active; Blotting, Western; Caco-2 Cells; Cardiotonic Agents; Cyclosporine; Digoxin; Dose-Response Relationship, Drug; Humans; Immunosuppressive Agents; Intestine, Small; Reverse Transcriptase Polymerase Chain Reaction; RNA, Messenger; Thyroid Hormones; Triiodothyronine | 2008 |
Calcineurin plays a modulatory role in loading-induced regulation of type I myosin heavy chain gene expression in slow skeletal muscle.
Topics: Animals; Calcineurin; Calcineurin Inhibitors; Cyclosporine; Enzyme Inhibitors; Female; Genotype; Hindlimb Suspension; Models, Animal; Muscle Fibers, Fast-Twitch; Muscle Fibers, Slow-Twitch; Myosin Heavy Chains; Myosin Type I; Phenotype; Protein Isoforms; Rats; Rats, Sprague-Dawley; RNA Precursors; RNA, Antisense; RNA, Messenger; Signal Transduction; Time Factors; Transcription, Genetic; Triiodothyronine; Weight-Bearing | 2009 |
Transport of estrone 3-sulfate mediated by organic anion transporter OATP4C1: estrone 3-sulfate binds to the different recognition site for digoxin in OATP4C1.
Topics: Animals; Binding, Competitive; Biological Transport; Cell Line; Chenodeoxycholic Acid; Cyclosporine; Digoxin; Dogs; Epithelial Cells; Estrone; Humans; Kidney; Organic Anion Transporters; Ouabain; Pharmacokinetics; Sulfobromophthalein; Triiodothyronine | 2010 |