arginine vasopressin has been researched along with vasoactive intestinal peptide in 135 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 22 (16.30) | 18.7374 |
1990's | 47 (34.81) | 18.2507 |
2000's | 34 (25.19) | 29.6817 |
2010's | 25 (18.52) | 24.3611 |
2020's | 7 (5.19) | 2.80 |
Authors | Studies |
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Aizawa, T; Daikoku, S; Kawano, H; Yokote, R | 1 |
Daikoku, S; Hisano, S; Kagotani, Y | 1 |
Ekman, R; Hegbrant, J; Thysell, H | 1 |
Aguilar-Roblero, R; Drucker-Colín, R; Moore, RY | 1 |
Bassetti, M; Faglia, G; Gil-del-Alamo, P; Lania, A; Reza-Elahi, F; Spada, A | 1 |
Arita, J; Endo, M; Fujita, K; Kimura, F | 1 |
Bartness, TJ; Bittman, EL; DeVries, GJ; Goldman, BD | 1 |
Agnati, LF; Ferraguti, F; Fuxe, K; Grimaldi, R; Toffano, G; Zini, I; Zoli, M | 1 |
Andersson, KE; Hedlund, H | 1 |
Ichikawa, T; Kobayashi, H; Yamada, C; Yamada, S | 1 |
Kilborn, MJ; McCloskey, DI; Potter, EK | 1 |
Gerstberger, R; Intaglietta, M; Meyer, JU; Printz, M; Rettig, R | 1 |
Clarke, IJ; Cummins, JT; Griffin, N; Thomas, GB | 1 |
Albani, M; Ballmann, M; Claussen, M; Hübner, C; Keup, B; Kohlschütter, A; Lindner, SG; Schürmann, M; Stegner, H | 1 |
Maegawa, M | 1 |
Benton, HP | 1 |
Bons, E; Lamberts, SW; Zuiderwijk, J | 1 |
Audigier, S; Barberis, C; Jard, S | 1 |
Gash, DM; Wiegand, SJ | 1 |
Boer, GJ; Kruisbrink, J; van Heerikhuize, JJ | 1 |
Boer, GJ; Kruisbrink, J; Mirmiran, M; Van der Woude, TP | 1 |
Bardrum, B; Fuchs, AR; Ottesen, B | 1 |
Fukui, K; Ibata, Y; Kawakami, F; Nakajima, T; Okamura, H; Yanaihara, C; Yanaihara, N | 1 |
Gjerris, A; Rafaelsen, OJ | 1 |
Bloom, FE | 1 |
Adrian, TE; Bloom, SR; Gillham, B; Jones, MT; Nicholson, SA | 1 |
Adams, EF; Loizou, M; Mashiter, K; White, MC | 1 |
Koch, B; Lutz-Bucher, B | 1 |
Cooper, KE; Ruwe, WD; Veale, WL | 1 |
Fahrenkrug, J; Fuchs, AR; Hansen, B; Ottesen, B | 1 |
Cheng, X; Duncan, MJ; Heller, KS | 1 |
Bodin, P; Burnstock, G; Cai, WQ; Dikranian, K; Turmaine, M | 1 |
Cassone, VM; Janik, D; Menaker, M; Pickard, GE | 1 |
Andersson, KE; Holmquist, F | 1 |
Steers, WD | 1 |
Baskaya, MK; Saito, K; Seki, Y; Shibuya, M; Sugita, K; Suzuki, Y; Takayasu, M | 1 |
Abe, H; Honma, K; Honma, S; Katsuno, Y; Shinohara, K | 2 |
Bonnefond, C; Monnerie, R; Tessonneaud, A; Viguier-Martinez, MC | 1 |
Bonnefond, C; Marcilloux, JC; Martinet, L; Monnerie, R; Peytevin, J | 1 |
Hofman, MA; Swaab, DF; Zhou, JN | 1 |
Bosler, O; Jacomy, H | 2 |
Isobe, Y; Muramatsu, K | 1 |
Alexander, LD; Sander, LD | 1 |
Kondo, K; Murase, T; Oiso, Y; Otake, K | 1 |
Inouye, SI; Okamura, H; Tominaga, K | 1 |
Larsen, PJ; Mikkelsen, JD | 1 |
Chun, SJ; Nagai, K; Nagai, N; Nakagawa, H; Shimizu, K; Sugahara, K; Takezawa, K; Tsuji, M | 1 |
Chouchkov, CN; Lazarov, NE | 1 |
Koch, B; Lutz-Bucher, B; Monnier, D | 1 |
Chihara, K; Hisa, Y; Ibata, Y; Matsuda, T; Okamura, H; Shigeyoshi, Y; Tanaka, M | 1 |
Nagai, K; Ohsawa, K; Sugita, S; Tokunaga, A; Tsutsui, K | 1 |
Hofman, MA; Hoogendijk, WJ; Lucassen, PJ; Mirmiran, M; Swaab, DF; van Someren, EJ; Zhou, JN | 1 |
Ibata, Y; Matsuda, T; Okamura, H; Shigeyoshi, Y; Tanaka, M | 1 |
Hayashi, S; Hisa, Y; Ibata, Y; Kubo, T; Munekawa, K; Okamura, H; Tamada, Y; Tanaka, M | 1 |
Buijs, RM; Pool, CW; Romijn, HJ; Sluiter, AA; Wortel, J | 1 |
Kashon, ML; Krajnak, K; Rosewell, KL; Wise, PM | 2 |
Isobe, Y; Nishino, H | 1 |
Abe, H; Honma, K; Honma, S; Katsuno, Y; Tanahashi, Y | 1 |
Vanecek, J; Watanabe, K; Yamaoka, S | 2 |
Csernus, V; Mess, B; Rekasi, Z; Sule, N | 1 |
Nürnberger, F; Schilling, J | 1 |
Breedijk, I; Emmering, J; Pool, CW; Radu, I; Romijn, HJ; van Uum, JF | 1 |
Görcs, T; Halász, B; Kiss, J; Kocsis, K | 1 |
DiGiorgio, S; Earnest, B; Earnest, DJ; Gallagher, M; Harvey, B; Liang, FQ; Seigel, G | 1 |
Bosler, O; Burlet, A; Jacomy, H | 1 |
Buijs, RM; Emmering, J; Goncharuk, V; Romijn, HJ; van Uum, JF | 1 |
Funabashi, T; Kimura, F; Mitsushima, D; Shinohara, K | 1 |
Block, GD; Grace, MS; Harrer, C; Herzog, ED; Shinohara, K; Williamson, J | 1 |
Duncan, MJ; Herron, JM; Hill, SA | 1 |
Honma, K; Honma, S; Nakamura, W; Shirakawa, T | 1 |
Abrahamson, EE; Moore, RY | 1 |
Andrade, JP; Cadete-Leite, A; Madeira, MD; Paula-Barbosa, MM; Silva, SM | 1 |
Okamura, H; Yan, L | 1 |
Duncan, MJ; Freeman, DA; Herron, JM | 1 |
Hon, J; Kriegsfeld, LJ; LeSauter, J; Silver, R | 1 |
Dorin, JR; Harmar, AJ; Hastings, MH; Kelly, JS; Marston, HM; Maywood, ES; Morrison, CF; Piggins, HD; Reubi, JC; Shen, S; Sheward, WJ; Spratt, C; West, KM | 1 |
Cutler, DJ; Haraura, M; Harmar, AJ; Marston, HM; Morrison, CF; Piggins, HD; Reed, HE; Shen, S; Sheward, WJ | 1 |
Cao, G; Chen, W; Ou, K; Wang, L | 1 |
Bult-Ito, A; Kuhlman, SJ; Le Sauter, J; McMahon, DG; Silver, R | 1 |
Calas, A; Créminon, C; De Maeyer, E; Frétier, P; Hardin-Pouzet, H; Seif, I; Vacher, CM | 1 |
Evans, AK; Goodson, JL; Lindberg, L | 1 |
Challet, E; Dardente, H; Masson-Pévet, M; Menet, JS; Pévet, P; Tournier, BB | 1 |
Andrade, JP; Lukoyanov, NV; Pereira, PA; Sá, SI; Silva, SM | 1 |
Mahoney, MM; Smale, L | 1 |
Aujard, F; Bentivoglio, M; Cayetanot, F | 1 |
Davis, VA; Duncan, MJ; Franklin, KM; Glass, JD; Grossman, GH; Knoch, ME | 1 |
Klisch, C; Mahr, S; Meissl, H | 1 |
Hayasaka, N; Hiyama, H; Inouye, ST; Masumoto, KH; Matsumoto, S; Nagano, M; Shigeyoshi, Y; Takashima, N | 1 |
Attia, J; Becquet, D; Blanchard, MP; Bosler, O; François-Bellan, AM; Guillaumond, F; Moreno, M | 1 |
Gerkema, MP; Jansen, K; Van der Zee, EA | 1 |
Handa, RJ; McGivern, RF; Zoeller, RT | 1 |
Allen, GC; Gamble, KL; McMahon, DG; Zhou, T | 1 |
Becquet, D; Bosler, O; François-Bellan, AM; Girardet, C; Guillaumond, F | 1 |
Noguchi, T; Watanabe, K | 1 |
Csaba, Z; Csáki, A; Halász, B; Kiss, J | 1 |
Becquet, D; Bosler, O; François-Bellan, AM; Girardet, C; Jacomy, H; Sage-Ciocca, D | 1 |
Canal, MM; Smith, L | 1 |
Angelo, N; Herzog, ED; Huettner, JE; Webb, AB | 1 |
Bhuiyan, T; LeSauter, J; Shimazoe, T; Silver, R | 1 |
Becquet, D; Blanchard, MP; Bosler, O; Ferracci, G; François-Bellan, AM; Girardet, C; Lévêque, C; Moreno, M | 1 |
Bigger, BW; Canal, MM; Cooper, JD; Wilkinson, FL; Wraith, JE; Wynn, R | 1 |
Buhr, ED; Takahashi, JS; Yoo, SH | 1 |
Allen, CN; Irwin, RP | 1 |
Cervenka, L; Dzirbíková, Z; Kiss, A; Kopkan, L; Okuliarová, M | 1 |
Becquet, D; Blanchard, MP; Bosler, O; François-Bellan, AM; Girardet, C | 1 |
Jagota, A; Mammen, AP | 1 |
Allen, GC; Earnest, DJ; Farnell, YF; Neuendorff, N; Shende, VR | 1 |
Mintz, EM; Paulus, EV | 1 |
Alkemade, A; Bisschop, PH; Borgers, AJ; Fliers, E; Siljee, JE; Swaab, DF; Van Someren, EJ | 1 |
Angeloni, D; Anink, JJ; Aziz, NA; Fraschini, F; Jockers, R; Roos, RA; Swaab, DF; van Steenhoven, R; van Wamelen, DJ | 1 |
Clark, DD; Gorman, MR; Hatori, M; Meadows, JD; Mellon, PL; Panda, S | 1 |
Freeman, GM; Herzog, ED; Slat, E | 1 |
Campos, LM; Cruz-Rizzolo, RJ; Donato, J; Frazão, R; Mello, P; Nogueira, MI; Pinato, L; Rocha, VA | 1 |
Campos, LM; Cruz-Rizzolo, RJ; Nogueira, MI; Pinato, L; Watanabe, IS | 1 |
LeSauter, J; Lokshin, M; Silver, R | 1 |
Aicher, SA; Allen, CN; Cravetchi, O; Irwin, RP; Moldavan, M; Williams, M | 1 |
Colwell, CS; Gad, L; Ghiani, CA; Hitchcock, ON; Kuljis, DA; Loh, DH; MacDowell Kaswan, Z | 1 |
Honma, K; Honma, S; Ono, D | 1 |
Granados-Fuentes, D; Herzog, ED; Taylor, SR; Wang, TJ | 1 |
Gao, X; Lai, B; Lin, Z; Qu, Z; Song, A; Xu, Y; Zou, J | 1 |
Adriana, B; Carolina, E; Diana, O; Ivan, O; Madahi, PG | 1 |
Herzel, H; Honma, KI; Honma, S; Ono, D; Tokuda, IT | 1 |
Buijs, RM; de Goede, P; Hogenboom, R; Kalsbeek, A; Kalsbeek, MJ; Koenen, M; Korpel, NL; Romijn, JA; Swaab, DF; Yi, CX | 1 |
Cheng, AH; Cheng, HM; Fung, SW | 1 |
Abel, JH; Cox, KH; Doyle, FJ; Izumo, M; Jeong, B; Li, Y; Olson, DP; Shan, Y; Takahashi, JS; Yoo, SH | 1 |
Huang, P; Huang, X; Li, H; Wang, P; Xie, G | 1 |
Reghunandanan, V | 1 |
Berto, S; Cox, KH; Greenberg, ME; Jeong, B; Joseph, C; Kim, TK; Konopka, G; Kulkarni, A; Takahashi, JS; Xu, P | 1 |
Evans, JA; Inda, T; Rohr, KE | 1 |
Allen, CN; Cravetchi, O; Klett, NJ | 1 |
Daikoku, T; Horike, SI; Maejima, T; Matsui, A; Mieda, M; Nakamura, TJ; Peng, Y; Sugiyama, M; Tsuno, Y; Wang, M; Yamagata, K | 1 |
7 review(s) available for arginine vasopressin and vasoactive intestinal peptide
Article | Year |
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Peptide neurohormones: their role in thermoregulation and fever.
Topics: Adrenocorticotropic Hormone; Angiotensin II; Animals; Arginine Vasopressin; Body Temperature Regulation; Bombesin; Diencephalon; Epilepsy; Fever; Nerve Tissue Proteins; Thyrotropin-Releasing Hormone; Vasoactive Intestinal Peptide | 1983 |
Regulation of tone in penile cavernous smooth muscle. Established concepts and new findings.
Topics: Adenosine Triphosphate; Animals; Arginine Vasopressin; Calcitonin Gene-Related Peptide; Endothelins; Endothelium, Vascular; Histamine; Humans; Male; Muscle Contraction; Muscle Relaxation; Muscle Tonus; Muscle, Smooth, Vascular; Neuromuscular Junction; Neuropeptide Y; Nitric Oxide; Penile Erection; Penis; Prostaglandins; Substance P; Synaptic Transmission; Vasoactive Intestinal Peptide | 1994 |
Physiology of the vas deferens.
Topics: Animals; Arginine Vasopressin; Calcitonin Gene-Related Peptide; Galanin; Humans; Male; Muscle Contraction; Muscle, Smooth; Neuromuscular Junction; Neuropeptide Y; Neuropeptides; Pancreatic Polypeptide; Peptides; Substance P; Synaptic Transmission; Vas Deferens; Vasoactive Intestinal Peptide | 1994 |
[Mechanisms of structural plasticity associated with photic synchronization of the circadian clock within the suprachiasmatic nucleus].
Topics: Animals; Arginine Vasopressin; Astrocytes; Axons; Cell Communication; Cell Membrane; Circadian Rhythm; Dendrites; Glial Fibrillary Acidic Protein; Glucocorticoids; Neurons; Photic Stimulation; Pineal Gland; Pituitary-Adrenal System; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2009 |
Neuroglial and synaptic rearrangements associated with photic entrainment of the circadian clock in the suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Biological Clocks; Circadian Rhythm; Glucocorticoids; Neuroglia; Neuronal Plasticity; Neurons; Photic Stimulation; Suprachiasmatic Nucleus; Synapses; Vasoactive Intestinal Peptide | 2010 |
The clock in the brain: neurons, glia, and networks in daily rhythms.
Topics: Animals; Arginine Vasopressin; Circadian Clocks; Circadian Rhythm; gamma-Aminobutyric Acid; Humans; Neuroglia; Neurons; Signal Transduction; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2013 |
Vasopressin in circadian function of SCN.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Humans; Neurons; Signal Transduction; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Vasopressins | 2020 |
1 trial(s) available for arginine vasopressin and vasoactive intestinal peptide
Article | Year |
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Colocalization of VIP with AVP in neurons of the human paraventricular, supraoptic and suprachiasmatic nucleus.
Topics: Adult; Aged; Arginine Vasopressin; Fluorescent Antibody Technique; Humans; Male; Microscopy, Confocal; Middle Aged; Neurons; Paraventricular Hypothalamic Nucleus; Suprachiasmatic Nucleus; Supraoptic Nucleus; Vasoactive Intestinal Peptide | 1999 |
127 other study(ies) available for arginine vasopressin and vasoactive intestinal peptide
Article | Year |
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Light stimulation of the hypothalamic neuroendocrine system.
Topics: Animals; Arginine Vasopressin; Darkness; Immunohistochemistry; Male; Neurons; Neuropeptides; Neurosecretory Systems; Photic Stimulation; Proto-Oncogene Proteins c-fos; Rats; Rats, Inbred Strains; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1992 |
Neuronal associations in the rat suprachiasmatic nucleus demonstrated by immunoelectron microscopy.
Topics: Animals; Arginine Vasopressin; Axons; Colchicine; Immunohistochemistry; Male; Microscopy, Immunoelectron; Nerve Endings; Neurons; Rats; Rats, Sprague-Dawley; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1992 |
Plasma levels of vasoactive regulatory peptides in patients receiving regular hemodialysis treatment.
Topics: Adult; Aged; Aged, 80 and over; Arginine Vasopressin; Atrial Natriuretic Factor; beta-Endorphin; Blood Pressure; Enkephalin, Methionine; Female; Humans; Kidney Failure, Chronic; Kidney Function Tests; Male; Middle Aged; Motilin; Neuropeptide Y; Neuropeptides; Renal Dialysis; Substance P; Vascular Resistance; Vasoactive Intestinal Peptide | 1992 |
Behavioral and morphological studies of fetal neural transplants into SCN-lesioned rats.
Topics: Animals; Arginine Vasopressin; Brain Tissue Transplantation; Cerebral Ventricles; Circadian Rhythm; Darkness; Drinking Behavior; Fetal Tissue Transplantation; Hypothalamus, Anterior; Immunohistochemistry; Light; Male; Neurons; Neuropeptide Y; Occipital Lobe; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 1992 |
Hypothalamic peptides modulate cytosolic free Ca2+ levels and adenylyl cyclase activity in human nonfunctioning pituitary adenomas.
Topics: Adenoma; Adenylyl Cyclases; Adult; Aged; Arginine Vasopressin; Calcium; Corticotropin-Releasing Hormone; Cytosol; Female; Gonadotropin-Releasing Hormone; Growth Hormone-Releasing Hormone; Humans; Hypothalamic Hormones; Male; Middle Aged; Pituitary Neoplasms; Second Messenger Systems; Somatostatin; Thyrotropin-Releasing Hormone; Vasoactive Intestinal Peptide | 1991 |
Mechanism for the cardiovascular action of intracerebroventricularly administered vasoactive intestinal polypeptide in rats.
Topics: Adrenal Medulla; Adrenalectomy; Animals; Arginine Vasopressin; Blood Pressure; Cardiovascular System; Dose-Response Relationship, Drug; Epinephrine; Heart Rate; Injections, Intraventricular; Male; Norepinephrine; Pituitary Gland; Rats; Rats, Brattleboro; Rats, Inbred Strains; Sensory Receptor Cells; Vasoactive Intestinal Peptide | 1991 |
Suprachiasmatic and paraventricular control of photoperiodism in Siberian hamsters.
Topics: Analysis of Variance; Animals; Arginine Vasopressin; beta-Endorphin; Body Weight; Brain Diseases; Circadian Rhythm; Cricetinae; Follicle Stimulating Hormone; Gonadotropin-Releasing Hormone; Immunohistochemistry; Luteinizing Hormone; Male; Melatonin; Neuropeptides; Paraventricular Hypothalamic Nucleus; Prolactin; Suprachiasmatic Nucleus; Testis; Vasoactive Intestinal Peptide | 1991 |
Effects of transient forebrain ischemia on peptidergic neurons and astroglial cells: evidence for recovery of peptide immunoreactivities in neocortex and striatum but not hippocampal formation.
Topics: Animals; Arginine Vasopressin; Astrocytes; Cerebral Cortex; Cholecystokinin; Corpus Striatum; Electroencephalography; Glial Fibrillary Acidic Protein; Hippocampus; Immunohistochemistry; Ischemic Attack, Transient; Male; Neurons; Neuropeptide Y; Peptides; Rats; Rats, Inbred Strains; Somatostatin; Vasoactive Intestinal Peptide | 1990 |
Effects of some peptides on isolated human penile erectile tissue and cavernous artery.
Topics: Aged; Arginine Vasopressin; Arteries; Electric Stimulation; Humans; In Vitro Techniques; Male; Middle Aged; Muscle Contraction; Muscle, Smooth, Vascular; Nerve Tissue Proteins; Neuropeptide Y; Norepinephrine; Penis; Somatostatin; Substance P; Vasoactive Intestinal Peptide | 1985 |
Immunohistochemical localization of urotensin I and other neuropeptides in the caudal neurosecretory system of three species of teleosts and two species of elasmobranchs.
Topics: Animals; Arginine Vasopressin; Carps; Fishes; Gastrin-Releasing Peptide; Gastrins; Immune Sera; Immunoassay; Nerve Tissue Proteins; Neurosecretory Systems; Peptides; Somatostatin; Species Specificity; Spinal Cord; Substance P; Urotensins; Vasoactive Intestinal Peptide | 1986 |
Effects of periods of conditioning stimulation and of neuropeptides on vagal action at the heart.
Topics: Animals; Arginine Vasopressin; Blood Gas Analysis; Blood Pressure; Dogs; Electric Stimulation; Female; Heart; Male; Methacholine Chloride; Methacholine Compounds; Neuropeptides; Neurotensin; Pulse; Somatostatin; Substance P; Vagus Nerve; Vasoactive Intestinal Peptide | 1986 |
Regulatory role of vasoactive peptides in subcutaneous skin microcirculation of the hamster.
Topics: Angiotensin II; Animals; Arginine Vasopressin; Atrial Natriuretic Factor; Blood Pressure; Cricetinae; Male; Mesocricetus; Microcirculation; Reference Values; Skin; Substance P; Vasoactive Intestinal Peptide | 1988 |
Effect and site of action of hypothalamic neuropeptides on prolactin release in sheep.
Topics: Animals; Arginine Vasopressin; Bombesin; Female; Hypothalamus; Neuropeptide Y; Neuropeptides; Neurotensin; Ovariectomy; Oxytocin; Peptide PHI; Pituitary Gland; Pituitary Hormones; Prolactin; Sheep; Substance P; Thyrotropin-Releasing Hormone; Vasoactive Intestinal Peptide | 1988 |
Increased plasma membrane fluidity and decreased receptor availability of nonmuscle cells in myotonic dystrophy.
Topics: Adolescent; Adult; Arginine Vasopressin; Blood Platelets; Female; Humans; Leukocytes, Mononuclear; Male; Membrane Fluidity; Membrane Lipids; Muscular Dystrophies; Vasoactive Intestinal Peptide | 1989 |
Development and architectonics of the suprachiasmatic nucleus of rats. Immunohistochemical study.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Circadian Rhythm; Fetus; Gestational Age; Male; Microscopy, Electron; Rats; Rats, Inbred Strains; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1987 |
The pharmacological mediation of epithelial cell proliferation.
Topics: Adrenocorticotropic Hormone; Animals; Arginine Vasopressin; Bombesin; Calcium; Cell Cycle; Cell Division; Culture Techniques; Epidermal Growth Factor; Epithelial Cells; Epithelium; Humans; Liver Regeneration; Platelet-Derived Growth Factor; Protein Kinases; Vasoactive Intestinal Peptide | 1986 |
High concentrations of catecholamines selectively diminish the sensitivity of CRF-stimulated ACTH release by cultured rat pituitary cells to the suppressive effects of dexamethasone.
Topics: Adrenocorticotropic Hormone; Animals; Arginine Vasopressin; Catecholamines; Cells, Cultured; Corticotropin-Releasing Hormone; Dexamethasone; Drug Interactions; Epinephrine; Norepinephrine; Pituitary Gland; Rats; Secretory Rate; Vasoactive Intestinal Peptide | 1986 |
Vasoactive intestinal polypeptide increases inositol phospholipid breakdown in the rat superior cervical ganglion.
Topics: Animals; Arginine Vasopressin; Carbachol; Cyclic AMP; Ganglia, Sympathetic; Inositol Phosphates; Male; Peptides; Rats; Rats, Inbred Strains; Sugar Phosphates; Vasoactive Intestinal Peptide | 1986 |
Organization and efferent connections of transplanted suprachiasmatic nuclei.
Topics: Animals; Arginine Vasopressin; Efferent Pathways; Hypothalamus; Immunohistochemistry; Male; Neurophysins; Oxytocin; Rats; Rats, Brattleboro; Rats, Inbred Strains; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1988 |
Osmoregulation in rats with long-term enhanced cerebrospinal fluid levels of vasopressin or vasoactive intestinal polypeptide.
Topics: Animals; Arginine Vasopressin; Male; Rats; Rats, Inbred Strains; Vasoactive Intestinal Peptide; Water-Electrolyte Balance | 1988 |
Effects of enhanced cerebrospinal fluid levels of vasopressin, vasopressin antagonist or vasoactive intestinal polypeptide on circadian sleep-wake rhythm in the rat.
Topics: Animals; Arginine Vasopressin; Brain; Circadian Rhythm; Injections, Intraventricular; Male; Rats; Rats, Inbred Strains; Sleep; Time Factors; Vasoactive Intestinal Peptide; Vasopressins; Wakefulness | 1987 |
Preferential release of oxytocin in response to vasoactive intestinal polypeptide in rats.
Topics: Animals; Arginine Vasopressin; Cats; Dose-Response Relationship, Drug; Female; Male; Oxytocin; Pituitary Gland, Posterior; Primates; Rats; Rats, Inbred Strains; Vasoactive Intestinal Peptide | 1987 |
The influence of serotonergic inputs on peptide neurons in the rat suprachiasmatic nucleus: an immunocytochemical study.
Topics: 5,6-Dihydroxytryptamine; Animals; Arginine Vasopressin; Immunoenzyme Techniques; Male; Rats; Rats, Inbred Strains; Serotonin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1985 |
Neuropeptides in the cerebrospinal fluid (CSF) in psychiatric disorders.
Topics: Adult; Aged; Arginine Vasopressin; Cholecystokinin; Depressive Disorder; Female; Humans; Male; Mental Disorders; Middle Aged; Nerve Tissue Proteins; Schizophrenia; Thyrotropin-Releasing Hormone; Vasoactive Intestinal Peptide | 1985 |
Chemical communication in the CNS: neurotransmitters and their function.
Topics: Animals; Arginine Vasopressin; Behavior, Animal; Brain; Central Nervous System; Glycogen; Memory; Neurotransmitter Agents; Norepinephrine; Rats; Vasoactive Intestinal Peptide; Vasopressins | 1983 |
Effect of hypothalamic neuropeptides on corticotrophin release from quarters of rat anterior pituitary gland in vitro.
Topics: Adrenocorticotropic Hormone; Animals; Arginine Vasopressin; Bombesin; Cholecystokinin; Corticotropin-Releasing Hormone; Dose-Response Relationship, Drug; In Vitro Techniques; Male; Neurotensin; Peptides; Pituitary Gland, Anterior; Rats; Rats, Inbred Strains; Somatostatin; Substance P; Vasoactive Intestinal Peptide | 1984 |
Vasoactive intestinal peptide stimulates adrenocorticotropin release from human corticotropinoma cells in culture: interaction with arginine vasopressin and hydrocortisone.
Topics: Adenoma; Adrenocorticotropic Hormone; Arginine Vasopressin; Cells, Cultured; Dose-Response Relationship, Drug; Drug Interactions; Female; Gastrointestinal Hormones; Humans; Hydrocortisone; Pituitary Neoplasms; Vasoactive Intestinal Peptide | 1982 |
Characterization of specific receptors for vasopressin in the pituitary gland.
Topics: Angiotensin II; Animals; Arginine Vasopressin; Corticotropin-Releasing Hormone; Female; Oxytocin; Pituitary Gland, Anterior; Rats; Rats, Inbred Strains; Receptors, Cell Surface; Receptors, Vasopressin; Substrate Specificity; Vasoactive Intestinal Peptide | 1983 |
Vasoactive intestinal peptide (VIP) stimulates oxytocin and vasopressin release from the neurohypophyis.
Topics: Animals; Arginine Vasopressin; Cats; Female; Oxytocin; Pituitary Gland, Anterior; Pituitary Gland, Posterior; Time Factors; Tissue Distribution; Vasoactive Intestinal Peptide | 1984 |
Photoperiodic exposure and time of day modulate the expression of arginine vasopressin mRNA and vasoactive intestinal peptide mRNA in the suprachiasmatic nuclei of Siberian hamsters.
Topics: Animals; Arginine Vasopressin; Autoradiography; Circadian Rhythm; Cricetinae; Gene Expression; In Situ Hybridization; Male; Photoperiod; RNA, Messenger; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1995 |
Colocalization of vasoactive substances in the endothelial cells of human umbilical vessels.
Topics: Arginine Vasopressin; Atrial Natriuretic Factor; Calcitonin Gene-Related Peptide; Cells, Cultured; Endothelium, Vascular; Female; Humans; Immunohistochemistry; Microscopy, Immunoelectron; Neuropeptide Y; Neuropeptides; Substance P; Umbilical Arteries; Umbilical Veins; Vasoactive Intestinal Peptide | 1993 |
Retinohypothalamic projections and immunocytochemical analysis of the suprachiasmatic region of the desert iguana Dipsosaurus dorsalis.
Topics: Afferent Pathways; Animals; Arginine Vasopressin; Circadian Rhythm; Female; Iguanas; Immunoenzyme Techniques; Male; Neuropeptide Y; Nissl Bodies; Optic Nerve; Serotonin; Staining and Labeling; Suprachiasmatic Nucleus; Supraoptic Nucleus; Vasoactive Intestinal Peptide | 1994 |
Central cardiovascular effects induced by intracisternal PACAP in dogs.
Topics: Adrenergic alpha-Antagonists; Animals; Antidiuretic Hormone Receptor Antagonists; Arginine Vasopressin; Blood Pressure; Brain; Cardiovascular System; Catecholamines; Cisterna Magna; Dogs; Female; Heart Rate; Injections; Male; Neuropeptides; Neurotransmitter Agents; Pituitary Adenylate Cyclase-Activating Polypeptide; Vasoactive Intestinal Peptide | 1995 |
Two distinct oscillators in the rat suprachiasmatic nucleus in vitro.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Cytarabine; Floxuridine; In Vitro Techniques; Mitosis; N-Methylaspartate; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1995 |
Distribution of arginine-vasopressin and vasoactive intestinal peptide messenger RNA in the suprachiasmatic nucleus of the sheep.
Topics: Animals; Arginine Vasopressin; Female; Image Processing, Computer-Assisted; In Situ Hybridization; RNA, Messenger; Sheep; Suprachiasmatic Nucleus; Supraoptic Nucleus; Vasoactive Intestinal Peptide | 1995 |
Vasoactive intestinal polypeptide in the suprachiasmatic nucleus of the mink (Mustela vison) could play a key role in photic induction.
Topics: Animals; Arginine Vasopressin; Enkephalin, Methionine; Female; Gastric Inhibitory Polypeptide; Immunohistochemistry; In Situ Hybridization; Male; Mink; Neuropeptides; Periodicity; Photic Stimulation; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1995 |
No changes in the number of vasoactive intestinal polypeptide (VIP)-expressing neurons in the suprachiasmatic nucleus of homosexual men; comparison with vasopressin-expressing neurons.
Topics: Adult; Arginine Vasopressin; Cadaver; Cell Count; Homosexuality, Male; Humans; Male; Neurons; Sexual Behavior; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Vasopressins | 1995 |
Catecholaminergic innervation of the suprachiasmatic nucleus in the adult rat: ultrastructural relationships with neurons containing vasoactive intestinal peptide or vasopressin.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Dendrites; Dopamine; Female; Immunoenzyme Techniques; Immunohistochemistry; Light; Nerve Tissue Proteins; Neurons; Norepinephrine; Optic Nerve; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Synapses; Tyrosine 3-Monooxygenase; Vasoactive Intestinal Peptide | 1995 |
Day-night differences in the contents of vasoactive intestinal peptide, gastrin-releasing peptide and Arg-vasopressin in the suprachiasmatic nucleus of rat pups during postnatal development.
Topics: Age Factors; Animals; Arginine Vasopressin; Bombesin; Circadian Rhythm; Female; Gastrin-Releasing Peptide; Humans; Infant, Newborn; Peptides; Rats; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 1995 |
Involvement of vasopressin and corticotropin-releasing hormone in VIP- and PHI-induced secretion of ACTH and corticosterone.
Topics: Adrenocorticotropic Hormone; Animals; Arginine Vasopressin; Corticosterone; Corticotropin-Releasing Hormone; Fasting; Hypothalamo-Hypophyseal System; Male; Peptide PHI; Pituitary-Adrenal System; Rats; Rats, Sprague-Dawley; Secretory Rate; Stimulation, Chemical; Vasoactive Intestinal Peptide | 1995 |
Pituitary adenylate cyclase-activating polypeptide stimulates arginine vasopressin release in conscious rats.
Topics: Animals; Arginine Vasopressin; Blood Pressure; Dose-Response Relationship, Drug; Injections, Intraventricular; Male; Neuropeptides; Neurotransmitter Agents; Pituitary Adenylate Cyclase-Activating Polypeptide; Rats; Rats, Sprague-Dawley; Receptors, Vasoactive Intestinal Peptide; Vasoactive Intestinal Peptide | 1993 |
Circadian rhythms in the release of vasoactive intestinal polypeptide and arginine-vasopressin in organotypic slice culture of rat suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Organ Culture Techniques; Rats; Rats, Wistar; RNA, Messenger; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1994 |
Organotypic slice culture of the rat suprachiasmatic nucleus: sustenance of cellular architecture and circadian rhythm.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Base Sequence; Circadian Rhythm; Ependyma; Gene Expression Regulation; Male; Molecular Sequence Data; Organ Culture Techniques; Rats; Rats, Wistar; RNA, Messenger; Secretory Rate; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 1994 |
The suprachiasmatic nucleus of the mink (Mustela vison): apparent absence of vasopressin-immunoreactive neurons.
Topics: Animals; Arginine Vasopressin; Immunohistochemistry; Male; Mink; Neurons; Neurophysins; Periodicity; Reproduction; Seasons; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1993 |
Roles of the suprachiasmatic nucleus and vasoactive intestinal peptide in the response of plasma arginine vasopressin to osmotic challenge.
Topics: Animals; Arginine Vasopressin; Injections, Intraperitoneal; Injections, Intraventricular; Male; Rats; Rats, Wistar; Saline Solution, Hypertonic; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1996 |
Peptidergic innervation of the mesencephalic trigeminal nucleus in the cat.
Topics: Animals; Arginine Vasopressin; Bombesin; Calcitonin Gene-Related Peptide; Cats; Cholecystokinin; Colchicine; Enkephalins; Female; Immunohistochemistry; Male; Microscopy, Electron; Neurons, Afferent; Neuropeptide Y; Neuropeptides; Substance P; Trigeminal Nuclei; Vasoactive Intestinal Peptide | 1996 |
Evidence for the presence of receptors for pituitary adenylate cyclase-activating polypeptide in the neurohypophysis that are positively coupled to cyclic AMP formation and neurohypophyseal hormone secretion.
Topics: Animals; Arginine Vasopressin; Cyclic AMP; Cyclic AMP-Dependent Protein Kinases; Dose-Response Relationship, Drug; Gene Expression; Male; Neuropeptides; Neurotransmitter Agents; Oxytocin; Pituitary Adenylate Cyclase-Activating Polypeptide; Pituitary Gland, Posterior; Pituitary Hormones, Posterior; Rats; Rats, Wistar; Receptors, Pituitary Adenylate Cyclase-Activating Polypeptide; Receptors, Pituitary Adenylate Cyclase-Activating Polypeptide, Type I; Receptors, Pituitary Hormone; Vasoactive Intestinal Peptide | 1996 |
Somatostatin neurons form a distinct peptidergic neuronal group in the rat suprachiasmatic nucleus: a double labeling in situ hybridization study.
Topics: Animals; Arginine Vasopressin; Digoxigenin; Glutamate Decarboxylase; In Situ Hybridization; Male; Neurons; Rats; Rats, Wistar; RNA Probes; RNA, Messenger; Somatostatin; Suprachiasmatic Nucleus; Uridine Triphosphate; Vasoactive Intestinal Peptide | 1996 |
Intrinsic organization and monoaminergic innervation of the suprachiasmatic nucleus transplanted to adult rats. A light- and electron-microscopic study.
Topics: Animals; Arginine Vasopressin; Brain Tissue Transplantation; Cerebral Ventricles; Female; Fetal Tissue Transplantation; Microscopy, Electron; Nerve Fibers; Neurons; Rats; Rats, Sprague-Dawley; Serotonin; Suprachiasmatic Nucleus; Synapses; Transplantation, Heterotopic; Vasoactive Intestinal Peptide | 1996 |
Immunohistochemical characterization of the suprachiasmatic nucleus and the intergeniculate leaflet in the hereditary bilaterally microphthalmic rat.
Topics: Animals; Arginine Vasopressin; Geniculate Bodies; Immunohistochemistry; Microphthalmos; Nerve Fibers; Neurons; Neuropeptide Y; Neuropeptides; Rats; Rats, Mutant Strains; Reference Values; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1997 |
Circadian rhythm-related behavioral disturbances and structural hypothalamic changes in Alzheimer's disease.
Topics: Adult; Aged; Aged, 80 and over; Alzheimer Disease; Arginine Vasopressin; Brain Mapping; Circadian Rhythm; Female; Humans; Hypothalamic Diseases; Hypothalamus; Male; Middle Aged; Sleep Stages; Social Behavior Disorders; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Wakefulness | 1996 |
Peptide expression in GABAergic neurons in rat suprachiasmatic nucleus in comparison with other forebrain structures: a double labeling in situ hybridization study.
Topics: Animals; Arginine Vasopressin; Blotting, Northern; Cerebral Cortex; gamma-Aminobutyric Acid; Glutamate Decarboxylase; Hypothalamus; In Situ Hybridization; Male; Neurons; Peptides; Prosencephalon; Rats; Rats, Wistar; RNA, Complementary; RNA, Messenger; Somatostatin; Suprachiasmatic Nucleus; Supraoptic Nucleus; Vasoactive Intestinal Peptide | 1997 |
Neuron-glia interaction in the suprachiasmatic nucleus: a double labeling light and electron microscopic immunocytochemical study in the rat.
Topics: Animals; Arginine Vasopressin; Astrocytes; Cell Communication; Glial Fibrillary Acidic Protein; Immunohistochemistry; Male; Microscopy, Electron; Neuroglia; Neurons; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1998 |
Evidence from confocal fluorescence microscopy for a dense, reciprocal innervation between AVP-, somatostatin-, VIP/PHI-, GRP-, and VIP/PHI/GRP-immunoreactive neurons in the rat suprachiasmatic nucleus.
Topics: Animals; Antibody Specificity; Arginine Vasopressin; Fluorescent Antibody Technique; Gastrin-Releasing Peptide; Male; Microscopy, Confocal; Neurons; Neuropeptides; Peptide PHI; Rats; Rats, Wistar; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1997 |
Aging alters the rhythmic expression of vasoactive intestinal polypeptide mRNA but not arginine vasopressin mRNA in the suprachiasmatic nuclei of female rats.
Topics: Aging; Animals; Arginine Vasopressin; Female; Gene Expression; Periodicity; Rats; RNA, Messenger; Sex Characteristics; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1998 |
AVP rhythm in the suprachiasmatic nucleus in relation to locomotor activity under constant light.
Topics: Analysis of Variance; Animals; Arginine Vasopressin; Circadian Rhythm; Light; Male; Motor Activity; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1998 |
Circadian rhythms of arginine vasopressin and vasoactive intestinal polypeptide do not depend on cytoarchitecture of dispersed cell culture of rat suprachiasmatic nucleus.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Cell Culture Techniques; Cells, Cultured; Circadian Rhythm; Collagen; Culture Media, Serum-Free; Mitosis; Nerve Net; Neuroglia; Neurons; Peptides; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1998 |
Melatonin inhibits spontaneous and VIP-induced vasopressin release from suprachiasmatic neurons.
Topics: Animals; Arginine Vasopressin; Cells, Cultured; Circadian Rhythm; Culture Media, Conditioned; Dose-Response Relationship, Drug; Melatonin; Neurons; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1998 |
Sex differences in the daily rhythm of vasoactive intestinal polypeptide but not arginine vasopressin messenger ribonucleic acid in the suprachiasmatic nuclei.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Estradiol; Female; Male; Rats; RNA, Messenger; Sex Factors; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 1998 |
Adrenergic and peptidergic control of the regulation of cAMP efflux and melatonin secretion from perifused rat pineal gland.
Topics: Animals; Arginine Vasopressin; Biological Transport; Calcitonin Gene-Related Peptide; Cyclic AMP; Dose-Response Relationship, Drug; Melatonin; Neuropeptide Y; Oxytocin; Perfusion; Pineal Gland; Rats; Substance P; Sympathetic Nervous System; Vasoactive Intestinal Peptide | 1998 |
Dynamic changes in the immunoreactivity of neuropeptide systems of the suprachiasmatic nuclei in golden hamsters during the sleep-wake cycle.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Cricetinae; Gastrin-Releasing Peptide; Male; Mesocricetus; Neuropeptides; Sleep; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Wakefulness | 1998 |
Double immunolabeling of neuropeptides in the human hypothalamus as analyzed by confocal laser scanning fluorescence microscopy.
Topics: Adult; Arginine Vasopressin; Female; Gastrin-Releasing Peptide; Glutamate Decarboxylase; Humans; Hypothalamus; Immunohistochemistry; Male; Microscopy, Confocal; Neuropeptides; Vasoactive Intestinal Peptide | 1999 |
Metabotropic glutamate receptor in vasopressin, CRF and VIP hypothalamic neurones.
Topics: Animals; Arginine Vasopressin; Corticotropin-Releasing Hormone; Hypothalamus; Immunohistochemistry; Male; Neurons; Paraventricular Hypothalamic Nucleus; Rats; Rats, Sprague-Dawley; Receptors, Metabotropic Glutamate; Suprachiasmatic Nucleus; Supraoptic Nucleus; Vasoactive Intestinal Peptide | 1998 |
Establishment and characterization of adenoviral E1A immortalized cell lines derived from the rat suprachiasmatic nucleus.
Topics: Adenovirus E1A Proteins; Animals; Arginine Vasopressin; Cell Culture Techniques; Cell Division; Cell Line, Transformed; Cell Nucleus; Fetus; Gastrin-Releasing Peptide; Immunohistochemistry; Neurons; Neuropeptides; Rats; Rats, Long-Evans; RNA, Messenger; Somatostatin; Suprachiasmatic Nucleus; Transcription, Genetic; Vasoactive Intestinal Peptide | 1999 |
Vasoactive intestinal peptide neurons as synaptic targets for vasopressin neurons in the suprachiasmatic nucleus. Double-label immunocytochemical demonstration in the rat.
Topics: Animals; Arginine Vasopressin; Axons; Circadian Rhythm; Immunohistochemistry; Male; Microscopy, Confocal; Neurons; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Synapses; Vasoactive Intestinal Peptide | 1999 |
Gonadotropin-releasing hormone exhibits circadian rhythm in phase with arginine-vasopressin in co-cultures of the female rat preoptic area and suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Coculture Techniques; Drug Synergism; Estradiol; Female; Gonadotropin-Releasing Hormone; Neurons; Preoptic Area; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2000 |
The role of Clock in the developmental expression of neuropeptides in the suprachiasmatic nucleus.
Topics: Aging; Animals; Animals, Newborn; Arginine Vasopressin; CLOCK Proteins; Female; Male; Mice; Mice, Inbred Strains; Neurons; Neuropeptides; Suprachiasmatic Nucleus; Thalamus; Tissue Distribution; Trans-Activators; Vasoactive Intestinal Peptide | 2000 |
In vitro entrainment of the circadian rhythm of vasopressin-releasing cells in suprachiasmatic nucleus by vasoactive intestinal polypeptide.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Cells, Cultured; Circadian Rhythm; Glutamic Acid; Neurons; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 2000 |
Aging selectively suppresses vasoactive intestinal peptide messenger RNA expression in the suprachiasmatic nucleus of the Syrian hamster.
Topics: Aging; Animals; Arginine Vasopressin; Brain Chemistry; Circadian Rhythm; Cricetinae; Gene Expression; In Situ Hybridization; Male; Mesocricetus; RNA, Messenger; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2001 |
Regional pacemakers composed of multiple oscillator neurons in the rat suprachiasmatic nucleus.
Topics: Action Potentials; Animals; Animals, Newborn; Arginine Vasopressin; Biological Clocks; Cell Communication; Circadian Rhythm; Immunohistochemistry; Neurons; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2001 |
Suprachiasmatic nucleus in the mouse: retinal innervation, intrinsic organization and efferent projections.
Topics: Angiotensin II; Animals; Arginine Vasopressin; Biological Clocks; Calcium-Binding Proteins; Cholera Toxin; Dopamine beta-Hydroxylase; Enkephalin, Methionine; Galanin; gamma-Aminobutyric Acid; Gastrin-Releasing Peptide; Immunohistochemistry; Male; Mice; Mice, Inbred C57BL; Neural Pathways; Neurons; Neuropeptide Y; Neuropeptides; Neurotensin; Neurotransmitter Agents; Phenotype; Retina; Serotonin; Somatostatin; Substance P; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2001 |
Nerve growth factor restores mRNA levels and the expression of neuropeptides in the suprachiasmatic nucleus of rats submitted to chronic ethanol treatment and withdrawal.
Topics: Alcohol-Induced Disorders, Nervous System; Animals; Arginine Vasopressin; Cell Count; Ethanol; Gene Expression Regulation; Immunohistochemistry; Male; Nerve Growth Factor; Neurons; Neuropeptides; Rats; Rats, Wistar; RNA, Messenger; Substance Withdrawal Syndrome; Suprachiasmatic Nucleus; Up-Regulation; Vasoactive Intestinal Peptide | 2001 |
Gradients in the circadian expression of Per1 and Per2 genes in the rat suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Biological Clocks; Cell Cycle Proteins; Circadian Rhythm; Gene Expression Regulation; Light Signal Transduction; Male; Neurons; Nuclear Proteins; Period Circadian Proteins; Photic Stimulation; Rats; Rats, Wistar; RNA, Complementary; RNA, Messenger; Suprachiasmatic Nucleus; Transcription Factors; Vasoactive Intestinal Peptide | 2002 |
Absence of pineal-independent mediation of seasonal differences in suprachiasmatic nucleus AVP and VIP mRNA expression in Siberian hamsters.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Body Weight; Circadian Rhythm; Cricetinae; Female; Gene Expression Regulation; Male; Melatonin; Motor Activity; Neurons; Organ Size; Phodopus; Photoperiod; Pineal Gland; RNA, Messenger; Seasons; Suprachiasmatic Nucleus; Testis; Vasoactive Intestinal Peptide | 2002 |
Calbindin-D(28K) cells selectively contact intra-SCN neurons.
Topics: Animals; Arginine Vasopressin; Biotin; Calbindins; Cholecystokinin; Cricetinae; Dextrans; Gastrin-Releasing Peptide; Mesocricetus; Neural Pathways; Neurons; Neuropeptide Y; S100 Calcium Binding Protein G; Serotonin; Substance P; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2002 |
The VPAC(2) receptor is essential for circadian function in the mouse suprachiasmatic nuclei.
Topics: Animals; Arginine Vasopressin; ARNTL Transcription Factors; Basic Helix-Loop-Helix Transcription Factors; Biological Clocks; Cell Cycle Proteins; Circadian Rhythm; Cryptochromes; Drosophila Proteins; Eye Proteins; Flavoproteins; Gene Expression Regulation; Male; Mice; Mice, Knockout; Motor Activity; Mutation; Neurons; Neuropeptides; Neurophysins; Nuclear Proteins; Peptide PHI; Period Circadian Proteins; Photic Stimulation; Photoreceptor Cells, Invertebrate; Pituitary Adenylate Cyclase-Activating Polypeptide; Receptors, G-Protein-Coupled; Receptors, Vasoactive Intestinal Peptide; Receptors, Vasoactive Intestinal Peptide, Type II; RNA, Messenger; Suprachiasmatic Nucleus; Transcription Factors; Up-Regulation; Vasoactive Intestinal Peptide | 2002 |
The mouse VPAC2 receptor confers suprachiasmatic nuclei cellular rhythmicity and responsiveness to vasoactive intestinal polypeptide in vitro.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Electrophysiology; Gastrin-Releasing Peptide; Male; Mice; N-Methylaspartate; Neurons; Organ Culture Techniques; Peptides, Cyclic; Receptors, Vasoactive Intestinal Peptide; Receptors, Vasoactive Intestinal Peptide, Type II; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2003 |
[Distribution of peptidergic neurons in the rat suprachiasmatic nucleus].
Topics: Animals; Arginine Vasopressin; Immunohistochemistry; Male; Neurons; Rats; Rats, Sprague-Dawley; Somatostatin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2000 |
Phase resetting light pulses induce Per1 and persistent spike activity in a subpopulation of biological clock neurons.
Topics: Action Potentials; Animals; Arginine Vasopressin; Biological Clocks; Cell Cycle Proteins; Cells, Cultured; Circadian Rhythm; Electric Conductivity; Gene Expression Regulation; Green Fluorescent Proteins; Kinetics; Light; Luminescent Proteins; Male; Membrane Potentials; Mice; Mice, Transgenic; Models, Neurological; Neurons; Nuclear Proteins; Patch-Clamp Techniques; Period Circadian Proteins; Potassium Channels; Suprachiasmatic Nucleus; Transcriptional Activation; Vasoactive Intestinal Peptide | 2003 |
Monoaminergic control of vasopressin and VIP expression in the mouse suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Biogenic Monoamines; Immunohistochemistry; In Situ Hybridization; Male; Mice; Mice, Knockout; Monoamine Oxidase; Neurons; Norepinephrine; RNA, Messenger; Serotonin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2003 |
Chemoarchitectonic subdivisions of the songbird septum and a comparative overview of septum chemical anatomy in jawed vertebrates.
Topics: Animals; Arginine Vasopressin; Calcitonin Gene-Related Peptide; Choline O-Acetyltransferase; Enkephalin, Methionine; Female; Galanin; Immunohistochemistry; Male; Neural Pathways; Neurons; Neuropeptide Y; Septum of Brain; Songbirds; Species Specificity; Substance P; Tyrosine 3-Monooxygenase; Vasoactive Intestinal Peptide; Vocalization, Animal | 2004 |
Daily and circadian expression of neuropeptides in the suprachiasmatic nuclei of nocturnal and diurnal rodents.
Topics: Adaptation, Physiological; Animals; Arginine Vasopressin; Biological Clocks; Circadian Rhythm; Gastrin-Releasing Peptide; Gene Expression Regulation; Light; Mice; Molecular Sequence Data; Motor Activity; Neuropeptides; Photic Stimulation; RNA, Messenger; Suprachiasmatic Nucleus; Up-Regulation; Vasoactive Intestinal Peptide | 2004 |
Timed hypocaloric food restriction alters the synthesis and expression of vasopressin and vasoactive intestinal peptide in the suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Body Weight; Cell Count; Circadian Rhythm; Food Deprivation; Gene Expression Regulation; Immunohistochemistry; In Situ Hybridization; Male; Neurons; Organ Size; Rats; Rats, Wistar; RNA, Messenger; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 2004 |
Arginine vasopressin and vasoactive intestinal polypeptide fibers make appositions with gonadotropin-releasing hormone and estrogen receptor cells in the diurnal rodent Arvicanthis niloticus.
Topics: Animals; Arginine Vasopressin; Cell Count; Female; Gene Expression Regulation; Gonadotropin-Releasing Hormone; Immunohistochemistry; Muridae; Nerve Fibers; Neurons; Rats; Receptors, Estrogen; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2005 |
Arginine-vasopressin and vasointestinal polypeptide rhythms in the suprachiasmatic nucleus of the mouse lemur reveal aging-related alterations of circadian pacemaker neurons in a non-human primate.
Topics: Aging; Animals; Arginine Vasopressin; Cell Count; Cheirogaleidae; Circadian Rhythm; Gene Expression Regulation; Immunohistochemistry; Male; Neurons; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2005 |
Short-term constant light potentiation of large-magnitude circadian phase shifts induced by 8-OH-DPAT: effects on serotonin receptors and gene expression in the hamster suprachiasmatic nucleus.
Topics: 8-Hydroxy-2-(di-n-propylamino)tetralin; Animals; Arginine Vasopressin; Cell Cycle Proteins; Circadian Rhythm; Cricetinae; Gene Expression; In Situ Hybridization; Light; Male; Mesocricetus; Motor Activity; Nuclear Proteins; Period Circadian Proteins; Radioligand Assay; Receptors, Serotonin; RNA, Messenger; Serotonin Receptor Agonists; Suprachiasmatic Nucleus; Transcription Factors; Tritium; Vasoactive Intestinal Peptide | 2005 |
Circadian activity rhythms and phase-shifting of cultured neurons of the rat suprachiasmatic nucleus.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Brain; Cells, Cultured; Circadian Rhythm; Melatonin; Neurons; Neuropeptides; Oligonucleotide Array Sequence Analysis; Rats; Suprachiasmatic Nucleus; Synaptic Transmission; Time Factors; Vasoactive Intestinal Peptide | 2006 |
Distinct localization of prokineticin 2 and prokineticin receptor 2 mRNAs in the rat suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Gastrin-Releasing Peptide; Gastrointestinal Hormones; Gene Expression Regulation; In Situ Hybridization; Male; Neuropeptides; Rats; Receptors, G-Protein-Coupled; Receptors, Peptide; RNA, Messenger; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2006 |
Nocturnal expression of phosphorylated-ERK1/2 in gastrin-releasing peptide neurons of the rat suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Cell Nucleus; Circadian Rhythm; Cytoplasm; Gastrin-Releasing Peptide; Gene Expression Regulation; Glial Fibrillary Acidic Protein; Light; Male; Mitogen-Activated Protein Kinase 3; Neurons; Phosphorylation; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2007 |
Vasopressin immunoreactivity, but not vasoactive intestinal polypeptide, correlates with expression of circadian rhythmicity in the suprachiasmatic nucleus of voles.
Topics: Animals; Arginine Vasopressin; Arvicolinae; Behavior, Animal; Biological Clocks; Circadian Rhythm; Male; Neurons; Somatostatin; Substance P; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2007 |
Changes in vasoactive intestinal peptide and arginine vasopressin expression in the suprachiasmatic nucleus of the rat brain following footshock stress.
Topics: Animals; Arginine Vasopressin; Cell Count; Chronobiology Disorders; Circadian Rhythm; Down-Regulation; Electric Stimulation; Hypothalamus, Anterior; Image Processing, Computer-Assisted; In Situ Hybridization; Male; Paraventricular Hypothalamic Nucleus; Rats; Rats, Sprague-Dawley; RNA, Heterogeneous Nuclear; RNA, Messenger; Stress, Psychological; Suprachiasmatic Nucleus; Time Factors; Up-Regulation; Vasoactive Intestinal Peptide | 2007 |
Gastrin-releasing peptide mediates light-like resetting of the suprachiasmatic nucleus circadian pacemaker through cAMP response element-binding protein and Per1 activation.
Topics: Action Potentials; Analysis of Variance; Anesthetics, Local; Animals; Animals, Newborn; Arginine Vasopressin; Behavior, Animal; Cell Cycle Proteins; Circadian Rhythm; Cyclic AMP Response Element-Binding Protein; Gastrin-Releasing Peptide; Gene Expression Regulation; Green Fluorescent Proteins; In Vitro Techniques; Mice; Mice, Inbred C57BL; Mice, Transgenic; Nuclear Proteins; Period Circadian Proteins; Photic Stimulation; Suprachiasmatic Nucleus; Tetrodotoxin; Time Factors; Transcriptional Activation; Vasoactive Intestinal Peptide | 2007 |
Ultrastructural plasticity in the rat suprachiasmatic nucleus. Possible involvement in clock entrainment.
Topics: Analysis of Variance; Animals; Arginine Vasopressin; Circadian Rhythm; Dendrites; Gene Expression Regulation; Glial Fibrillary Acidic Protein; Male; Microscopy, Electron, Transmission; Neuroglia; Neuronal Plasticity; Neurons; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2008 |
Regional differences in circadian period within the suprachiasmatic nucleus.
Topics: Analysis of Variance; Animals; Arginine Vasopressin; Circadian Rhythm; Immunohistochemistry; In Vitro Techniques; Periodicity; Rats; Rats, Sprague-Dawley; Regression Analysis; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 2008 |
Synaptic contacts of vesicular glutamate transporter 2 fibres on chemically identified neurons of the hypothalamic suprachiasmatic nucleus of the rat.
Topics: Animals; Arginine Vasopressin; gamma-Aminobutyric Acid; Glutamic Acid; Male; Microscopy, Confocal; Microscopy, Immunoelectron; Neurons; Presynaptic Terminals; Rats; Rats, Wistar; Suprachiasmatic Nucleus; Synapses; Synaptic Transmission; Vasoactive Intestinal Peptide; Vesicular Glutamate Transport Protein 1; Vesicular Glutamate Transport Protein 2 | 2008 |
Expression of circadian neuropeptides in the hypothalamus of adult mice is affected by postnatal light experience.
Topics: Animals; Arginine Vasopressin; Behavior, Animal; Circadian Rhythm; Female; Immunohistochemistry; Light; Locomotion; Mice; Mice, Inbred C57BL; Neuropeptides; Pregnancy; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2009 |
Intrinsic, nondeterministic circadian rhythm generation in identified mammalian neurons.
Topics: Animals; Arginine Vasopressin; Cell Cycle Proteins; Cells, Cultured; Circadian Rhythm; Gene Knock-In Techniques; Immunohistochemistry; Luciferases; Luminescent Measurements; Mice; Mice, Inbred C57BL; Neurons; Nuclear Proteins; Patch-Clamp Techniques; Period Circadian Proteins; Suprachiasmatic Nucleus; Tissue Culture Techniques; Transcription Factors; Vasoactive Intestinal Peptide | 2009 |
Circadian trafficking of calbindin-ir in fibers of SCN neurons.
Topics: Animals; Arginine Vasopressin; Calbindins; Cholecystokinin; Circadian Rhythm; Cricetinae; Gastrin-Releasing Peptide; Male; Mesocricetus; Nerve Fibers; S100 Calcium Binding Protein G; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2009 |
Daily changes in synaptic innervation of VIP neurons in the rat suprachiasmatic nucleus: contribution of glutamatergic afferents.
Topics: Animals; Arginine Vasopressin; Biological Clocks; Circadian Rhythm; Glutamic Acid; Male; Nerve Fibers; Nerve Tissue Proteins; Neurons; Rats; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Synapses; Vasoactive Intestinal Peptide; Vesicular Glutamate Transport Protein 1; Vesicular Glutamate Transport Protein 2 | 2010 |
Circadian rhythm and suprachiasmatic nucleus alterations in the mouse model of mucopolysaccharidosis IIIB.
Topics: Actigraphy; Age Factors; Analysis of Variance; Animals; Arginine Vasopressin; Behavior, Animal; Circadian Rhythm; Disease Models, Animal; Image Processing, Computer-Assisted; Immunohistochemistry; Mice; Motor Activity; Mucopolysaccharidosis III; Photoperiod; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2010 |
Temperature as a universal resetting cue for mammalian circadian oscillators.
Topics: Animals; Arginine Vasopressin; Benzhydryl Compounds; Biological Clocks; Body Temperature; Body Temperature Regulation; Calcium Channels, L-Type; Cell Communication; Circadian Rhythm; Cues; DNA-Binding Proteins; Heat Shock Transcription Factors; Heat-Shock Response; Lung; Mice; Pituitary Gland; Pyrrolidinones; Signal Transduction; Suprachiasmatic Nucleus; Temperature; Tissue Culture Techniques; Transcription Factors; Transcription, Genetic; Vasoactive Intestinal Peptide | 2010 |
Neuropeptide-mediated calcium signaling in the suprachiasmatic nucleus network.
Topics: Animals; Arginine Vasopressin; Calcium; Calcium Signaling; Circadian Rhythm; Darkness; Gene Expression Regulation; Light; Male; Nerve Net; Neurons; Neuropeptides; Nociceptin; Nociceptin Receptor; Opioid Peptides; Pituitary Adenylate Cyclase-Activating Polypeptide; Rats; Rats, Sprague-Dawley; Receptors, GABA-A; Receptors, Opioid; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2010 |
Expressions of per1 clock gene and genes of signaling peptides vasopressin, vasoactive intestinal peptide, and oxytocin in the suprachiasmatic and paraventricular nuclei of hypertensive TGR[mREN2]27 rats.
Topics: Animals; Arginine Vasopressin; Autoradiography; Blood Pressure; Circadian Rhythm; Gene Expression Regulation; Heart Rate; Hypertension; Motor Activity; Oxytocin; Paraventricular Hypothalamic Nucleus; Period Circadian Proteins; Rats; Rats, Sprague-Dawley; RNA, Messenger; Signal Transduction; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2011 |
Immunocytochemical evidence for different patterns in daily rhythms of VIP and AVP peptides in the suprachiasmatic nucleus of diurnal Funambulus palmarum.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Gene Expression Regulation; Motor Activity; Neurons; Optic Chiasm; Photoperiod; Sciuridae; Suprachiasmatic Nucleus; Third Ventricle; Vasoactive Intestinal Peptide | 2011 |
Immortalized cell lines for real-time analysis of circadian pacemaker and peripheral oscillator properties.
Topics: Animals; Arginine Vasopressin; Biological Clocks; Cell Line; Circadian Rhythm; Coculture Techniques; Female; Fibroblasts; Gene Knock-In Techniques; Mice; Period Circadian Proteins; Recombinant Fusion Proteins; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2011 |
Developmental disruption of the serotonin system alters circadian rhythms.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Gene Expression Regulation; Mice; Mice, Inbred C57BL; Mice, Knockout; Motor Activity; Paraventricular Hypothalamic Nucleus; Raphe Nuclei; Ribonucleosides; Serotonin; Suprachiasmatic Nucleus; Transcription Factors; Vasoactive Intestinal Peptide | 2012 |
Arginine vasopressin immunoreactivity is decreased in the hypothalamic suprachiasmatic nucleus of subjects with suprasellar tumors.
Topics: Aged; Aged, 80 and over; Arginine Vasopressin; Female; Gene Expression Regulation, Neoplastic; Humans; Male; Middle Aged; Perceptual Disorders; Pituitary Neoplasms; Postmortem Changes; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Visual Fields | 2013 |
Suprachiasmatic nucleus neuropeptide expression in patients with Huntington's Disease.
Topics: Arginine Vasopressin; Chronobiology Disorders; Circadian Rhythm; Cohort Studies; Female; Humans; Huntington Disease; Hypothalamus; In Situ Hybridization; Male; Neuropeptides; Sleep Wake Disorders; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2013 |
Aberrant development of the suprachiasmatic nucleus and circadian rhythms in mice lacking the homeodomain protein Six6.
Topics: Animals; Arginine Vasopressin; beta-Galactosidase; Circadian Rhythm; Homeodomain Proteins; Male; Mice; Mice, Inbred C57BL; Mice, Knockout; Photoperiod; Skeleton; Suprachiasmatic Nucleus; Trans-Activators; Vasoactive Intestinal Peptide | 2013 |
Intrinsic organization of the suprachiasmatic nucleus in the capuchin monkey.
Topics: Animals; Arginine Vasopressin; Calbindin 2; Calbindins; Cebus; Circadian Rhythm; Gene Expression; Male; Nerve Tissue Proteins; Period Circadian Proteins; Photic Stimulation; RNA, Messenger; Serotonin; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2014 |
Efferent projections of the suprachiasmatic nucleus based on the distribution of vasoactive intestinal peptide (VIP) and arginine vasopressin (AVP) immunoreactive fibers in the hypothalamus of Sapajus apella.
Topics: Animals; Arginine Vasopressin; Cebus; Efferent Pathways; Hypothalamus; Immunohistochemistry; Male; Nerve Fibers; Preoptic Area; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2014 |
Selective Distribution of Retinal Input to Mouse SCN Revealed in Analysis of Sagittal Sections.
Topics: Animals; Arginine Vasopressin; Circadian Clocks; Gastrin-Releasing Peptide; Mice; Neural Pathways; Neurons; Retina; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2015 |
Localization and expression of GABA transporters in the suprachiasmatic nucleus.
Topics: Animals; Arginine Vasopressin; Astrocytes; Blotting, Western; Cells, Cultured; Circadian Rhythm; GABA Plasma Membrane Transport Proteins; Glial Fibrillary Acidic Protein; Immunohistochemistry; Male; Microscopy, Electron; Neurons; Rats, Sprague-Dawley; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2015 |
Sex Differences in Circadian Dysfunction in the BACHD Mouse Model of Huntington's Disease.
Topics: Animals; Arginine Vasopressin; Chromosomes, Artificial, Bacterial; Circadian Rhythm; Disease Models, Animal; Disease Progression; Female; Founder Effect; Gene Expression; Humans; Huntington Disease; Male; Mice; Mice, Transgenic; Motor Activity; Rotarod Performance Test; Sex Factors; Suprachiasmatic Nucleus; Time Factors; Vasoactive Intestinal Peptide | 2016 |
Differential roles of AVP and VIP signaling in the postnatal changes of neural networks for coherent circadian rhythms in the SCN.
Topics: Animals; Arginine Vasopressin; Circadian Clocks; Circadian Rhythm; Cryptochromes; Gene Expression Regulation, Developmental; Mice; Mice, Knockout; Period Circadian Proteins; Signal Transduction; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2016 |
Resynchronization Dynamics Reveal that the Ventral Entrains the Dorsal Suprachiasmatic Nucleus.
Topics: Algorithms; Animals; Arginine Vasopressin; Circadian Clocks; Circadian Rhythm; Luciferases; Luminescent Measurements; Mice, Inbred C57BL; Mice, Transgenic; Models, Biological; Period Circadian Proteins; Sodium Channel Blockers; Suprachiasmatic Nucleus; Tetrodotoxin; Vasoactive Intestinal Peptide | 2017 |
Haploinsufficiency of hnRNP U Changes Activity Pattern and Metabolic Rhythms.
Topics: Animals; Arginine Vasopressin; Circadian Rhythm; Female; Gene Expression Regulation; Haploinsufficiency; Heterogeneous-Nuclear Ribonucleoprotein U; Male; Mice; Mice, Knockout; Motor Activity; Vasoactive Intestinal Peptide | 2018 |
Constant light during lactation programs circadian and metabolic systems.
Topics: Animals; Animals, Newborn; Arginine Vasopressin; Biological Clocks; Blood Glucose; Circadian Rhythm; Energy Metabolism; Female; Lactation; Light; Period Circadian Proteins; Photoperiod; Pregnancy; Rats, Wistar; Suprachiasmatic Nucleus; Time Factors; Triglycerides; Vasoactive Intestinal Peptide; Weight Gain | 2018 |
Coherency of circadian rhythms in the SCN is governed by the interplay of two coupling factors.
Topics: Animals; Arginine Vasopressin; Circadian Clocks; Circadian Rhythm; Mice; Mice, Inbred C57BL; Mice, Knockout; Neurons; Neuropeptides; Period Circadian Proteins; Signal Transduction; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2018 |
Loss of arginine vasopressin- and vasoactive intestinal polypeptide-containing neurons and glial cells in the suprachiasmatic nucleus of individuals with type 2 diabetes.
Topics: Arginine Vasopressin; Circadian Rhythm; Diabetes Mellitus, Type 2; Humans; Life Style; Microglia; Neuroglia; Neurons; Neuropeptides; Neurophysins; Protein Precursors; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Vasopressins | 2019 |
Limitations of the Avp-IRES2-Cre (JAX #023530) and Vip-IRES-Cre (JAX #010908) Models for Chronobiological Investigations.
Topics: Animals; Arginine Vasopressin; Chronobiology Phenomena; Circadian Clocks; Circadian Rhythm; Female; Gene Expression; Integrases; Male; Mice; Mice, Transgenic; Neurons; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2019 |
Dual-Color Single-Cell Imaging of the Suprachiasmatic Nucleus Reveals a Circadian Role in Network Synchrony.
Topics: Animals; Arginine Vasopressin; ARNTL Transcription Factors; Circadian Rhythm; Gene Knockout Techniques; Luciferases; Mice; Mice, Transgenic; Nerve Net; Period Circadian Proteins; Single-Cell Analysis; Suprachiasmatic Nucleus; Suprachiasmatic Nucleus Neurons; Time-Lapse Imaging; Vasoactive Intestinal Peptide | 2020 |
Caffeine-related effects on cognitive performance: Roles of apoptosis in rat hippocampus following sleep deprivation.
Topics: Animals; Apoptosis; Arginine Vasopressin; Caffeine; Central Nervous System Stimulants; Cognition; Cognitive Dysfunction; Disease Models, Animal; Dose-Response Relationship, Drug; Hippocampus; Humans; Male; Mitochondria; Motor Activity; Nootropic Agents; Pyramidal Cells; Rats; Rats, Sprague-Dawley; Signal Transduction; Sleep Deprivation; Spatial Learning; Vasoactive Intestinal Peptide | 2021 |
NPAS4 regulates the transcriptional response of the suprachiasmatic nucleus to light and circadian behavior.
Topics: Animals; Arginine Vasopressin; Basic Helix-Loop-Helix Transcription Factors; Cholecystokinin; Chromatin Immunoprecipitation; Circadian Rhythm; Gene Expression Profiling; Light; Mice; Mice, Knockout; Neurons; Sequence Analysis, RNA; Single-Cell Analysis; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2021 |
Vasopressin Resets the Central Circadian Clock in a Manner Influenced by Sex and Vasoactive Intestinal Polypeptide Signaling.
Topics: Arginine Vasopressin; Circadian Clocks; Circadian Rhythm; Female; Humans; Male; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide; Vasopressins | 2022 |
Long-Term Imaging Reveals a Circadian Rhythm of Intracellular Chloride in Neurons of the Suprachiasmatic Nucleus.
Topics: Arginine Vasopressin; Chlorides; Circadian Rhythm; gamma-Aminobutyric Acid; Neurons; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2022 |
In vivo recording of suprachiasmatic nucleus dynamics reveals a dominant role of arginine vasopressin neurons in circadian pacesetting.
Topics: Animals; Arginine Vasopressin; Calcium; Mice; Neuroglia; Neurons; Suprachiasmatic Nucleus; Vasoactive Intestinal Peptide | 2023 |