Page last updated: 2024-08-26

nicotine and triiodothyronine

nicotine has been researched along with triiodothyronine in 12 studies

Research

Studies (12)

TimeframeStudies, this research(%)All Research%
pre-19904 (33.33)18.7374
1990's2 (16.67)18.2507
2000's2 (16.67)29.6817
2010's3 (25.00)24.3611
2020's1 (8.33)2.80

Authors

AuthorsStudies
Barnes, JC; Bradley, P; Day, NC; Fourches, D; Reed, JZ; Tropsha, A1
Hayashi, S; Kato, A; Mizuno, K; Morita, A; Nakata, E; Ohashi, K; Yamamura, K1
Agarwal, BL; DeCristofaro, JD; La Gamma, EF1
Connors, JM; Hedge, GA; Huffman, LJ; Michalkiewicz, M; Pietrzyk, Z1
Axelrad, CM; Haley, NJ; LaVoie, EJ; Sepkovic, DW; Shigematsu, A1
Elmore, DT; Lappin, TR1
Axelrad, CM; Haley, NJ; LaVoie, EJ; Sepkovic, DW1
Bassett, JR; Cam, GR1
Chen, WJ; Kelly, RB1
Abreu-Villaça, Y; Fagundes, AT; Lisboa, PC; Moura, EG; Nogueira Neto, JF; Oliveira, E; Passos, MC; Rios, AS; Santos-Silva, AP1
Christian Manhães, A; Claudio-Neto, S; de Moura, EG; de Oliveira, E; Lisboa, PC; Passos, MC; Pinheiro, CR; Santos-Silva, AP1
Puia, G; Ravazzini, F1

Other Studies

12 other study(ies) available for nicotine and triiodothyronine

ArticleYear
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
    Chemical research in toxicology, 2010, Volume: 23, Issue:1

    Topics: Animals; Chemical and Drug Induced Liver Injury; Cluster Analysis; Databases, Factual; Humans; MEDLINE; Mice; Models, Chemical; Molecular Conformation; Quantitative Structure-Activity Relationship

2010
Discovery of {1-[4-(2-{hexahydropyrrolo[3,4-c]pyrrol-2(1H)-yl}-1H-benzimidazol-1-yl)piperidin-1-yl]cyclooctyl}methanol, systemically potent novel non-peptide agonist of nociceptin/orphanin FQ receptor as analgesic for the treatment of neuropathic pain: de
    Bioorganic & medicinal chemistry, 2010, Nov-01, Volume: 18, Issue:21

    Topics: Analgesics; Animals; Benzimidazoles; Drug Design; Drug Evaluation, Preclinical; Humans; Microsomes, Liver; Neuralgia; Nociceptin Receptor; Pyrroles; Rats; Receptors, Opioid; Structure-Activity Relationship

2010
Regulation of adrenomedullary preproenkephalin mRNA: effects of hypoglycemia during development.
    Brain research. Molecular brain research, 1992, Volume: 13, Issue:3

    Topics: Adrenal Medulla; Animals; Animals, Newborn; Carbachol; Corpus Striatum; Deoxyglucose; Enkephalins; Gene Expression Regulation; Hypoglycemia; Insulin; Male; Nicotine; Protein Precursors; Rats; Rats, Inbred Strains; RNA, Messenger; Triiodothyronine

1992
Muscarinic modulation of the vasodilatory effects of vasoactive intestinal peptide at the rat thyroid gland.
    Neuroendocrinology, 1991, Volume: 53, Issue:1

    Topics: Acetylcholine; Animals; Atropine; Blood Flow Velocity; Male; Methacholine Chloride; Muscarinic Antagonists; Nicotine; Rats; Rats, Inbred Strains; Receptors, Muscarinic; Thyroid Gland; Thyrotropin; Thyroxine; Triiodothyronine; Vasoactive Intestinal Peptide; Vasodilation

1991
Short-term studies on the in vivo metabolism of N-oxides of nicotine in rats.
    Journal of toxicology and environmental health, 1986, Volume: 18, Issue:2

    Topics: Age Factors; Animals; Body Weight; Cotinine; Male; Nicotine; Oxidation-Reduction; Oxides; Rats; Rats, Inbred F344; Thyronines; Triiodothyronine

1986
The effect of thyroid hormones and other kinetic modifiers on bisphosphoglyceromutase from human erythrocytes.
    Biochemical pharmacology, 1980, Feb-15, Volume: 29, Issue:4

    Topics: Bisphosphoglycerate Mutase; Drug Interactions; Erythrocytes; Glycerophosphates; Humans; In Vitro Techniques; Kinetics; Nicotine; Phosphotransferases; Thyroid Hormones; Thyroxine; Time Factors; Triiodothyronine

1980
Thyroid hormone concentrations in rats after chronic nicotine metabolite administration.
    Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.), 1984, Volume: 177, Issue:3

    Topics: Animals; Body Weight; Cotinine; Cyclic N-Oxides; Male; Nicotine; Pyrrolidinones; Rats; Rats, Inbred F344; Thyroid Hormones; Thyroxine; Triiodothyronine; Triiodothyronine, Reverse

1984
The effect of acute nicotine administration on plasma levels of the thyroid hormones and corticosterone in the rat.
    Pharmacology, biochemistry, and behavior, 1983, Volume: 19, Issue:3

    Topics: Animals; Corticosterone; Male; Nicotine; Rats; Thyroid Hormones; Thyroxine; Time Factors; Triiodothyronine

1983
Effect of prenatal or perinatal nicotine exposure on neonatal thyroid status and offspring growth in rats.
    Life sciences, 2005, Jan-28, Volume: 76, Issue:11

    Topics: Administration, Oral; Age Factors; Animals; Animals, Newborn; Body Weight; Female; Injections, Subcutaneous; Male; Nicotine; Pregnancy; Prenatal Exposure Delayed Effects; Rats; Rats, Sprague-Dawley; Sex Factors; Thyroid Gland; Thyroxine; Triiodothyronine

2005
Short- and long-term effects of maternal nicotine exposure during lactation on body adiposity, lipid profile, and thyroid function of rat offspring.
    The Journal of endocrinology, 2009, Volume: 202, Issue:3

    Topics: Adipose Tissue; Animals; Animals, Suckling; Body Weight; Dyslipidemias; Female; Infusion Pumps, Implantable; Lactation; Leptin; Lipids; Male; Nicotine; Nicotinic Agonists; Pregnancy; Rats; Rats, Wistar; Thyroid Gland; Thyrotropin; Thyroxine; Triiodothyronine

2009
Neonatal hypothyroidism caused by maternal nicotine exposure is reversed by higher T3 transfer by milk after nicotine withdraw.
    Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association, 2011, Volume: 49, Issue:9

    Topics: Animals; Animals, Newborn; Female; Hypothyroidism; Lactation; Maternal Exposure; Milk; Nicotine; Rats; Rats, Wistar; Substance Withdrawal Syndrome; Thyrotropin; Triiodothyronine

2011
Thyroid hormones reduce nicotinic receptor mediated currents in SH-SY5Y neuroblastoma cells.
    Pharmacological reports : PR, 2020, Volume: 72, Issue:6

    Topics: Cell Line, Tumor; Humans; Inhibitory Concentration 50; Neuroblastoma; Nicotine; Nicotinic Agonists; Patch-Clamp Techniques; Receptors, Nicotinic; Thyroxine; Triiodothyronine

2020