INSULIN KAK FAKTOR NASTROYKI TsIRKADIANNOGO RITMA PROIZVOL'NOY LOKOMOTORNOY AKTIVNOSTI
- Authors: Mistryugov K.A.1
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- Issue: No 1 (1) (2012)
- Pages: 20-24
- Section: Biology
- Published: 15.12.2012
- URL: https://vmuis.ru/smus/article/view/8581
- ID: 8581
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References
- Заморский И. И., Пишак В. П. Функциональная организация фотопериодической системы головного мозга // Успехи физиол. наук. 2003. 34 (4). С. 37-53.
- Abrahamson E. E., Moore R. Y. Suprachiasmatic nucleus in the mouse: retinal innervation, intrinsic organization and efferent projections // Brain Research. 2001. Vol. 916. №1-2. 172-191 p.
- Anhe G. F., Caperuto L. C., Pereirada- Silva M., Souza L. C., Hirata A.., Velloso L. A., Cipolla-Neto J., Caivalho C. L. O. In vivo activation of insulin receptor tyrosine kinase by melatonin in the rat hypothalamic // J. Neurochemistry. 2004. Vol. 90. № 3. Р. 559-566.
- Belgardt B. F., Okamura T., Bruning J. C. Hormone and glucose signaling in POMC and AgRP neurons // J. Physiology. 2009. Vol. 587. № 22. 5305-5314 p.
- Benedict C., Hallschmid M., Schmitz K., Schultes B., Ratter F., Fehm H. L., Born J., Kern W. Intranasal insulin improves memory in humans: superiority of insulin aspart // Neuropsychopharmacology. 2007. Vol. 32. № 1. Р. 239-243.
- Benoit S. C., Clegg D. J., Seeley R. J., Woods S. C. Insulin and leptin as adiposity signals // Recent Progress in hormone research. 2004. Vol. 59. № 1. Р. 267-285.
- Bohringer A., Schwabe L., Richter S., Schachinger H. Intranasal insulin attenuates the hypothalamic-pituitary-adrenal axis response to psychosocial stress // Psychoneuroendocrinology. 2008. Vol. 33. № 10. Р. 1394-1400.
- Frey W. H. Bypassing the bloodbrain barrier to deliver therapeutic agents to the brain and spinal cord // Drug Delivery Technology. 2002. Vol. 2. Р. 46-49.
- Gerozissis K. Brain insulin: regulation, mechanisms of action and functions // Cellular and molecular neurobiology. 2003.Vol. 23. №1. Р. 1-25.
- Golombek D. A., Rosenstein R. E. Physiology of circadian entrainment // Physiol. Rev. 2010. Vol. 90. № 3. Р. 1063-1102.
- Hanson L. R., Martinez P. M., Taheri S., Kamsheh L., Mignot E., Frey W. H. Intranasal administration of hypocretin 1 (orexin A) bypasses the blood-brain barrier and targets the brain: a new strategy for the treatment of narcolepsy // Drug Delivery Technology. 2004. Vol. 4. № 4. Р. 1-9.
- Konner A. C., Klockener T., Bruning J. C. Control of energy homeostasis by insulin and leptin: targeting the arcuate nucleus and beyond // Physiology Behavior. 2009.Vol. 97. № 5. Р. 632-638.
- Michels K. M., Saavedra J. M. Different development of insulin-like growth factor I binding in the suprachiasmatic nucleus and median eminence of the rat hypothalamus // Neuroendocrinology. 1991.Vol. 54. № 5. Р. 504-514.
- Niswender K. D., Baskin D. G., Schwartz M. W. Insulin and its evolving partnership with leptin in the hypothalamic control of energy nomeostasis // Trends Endocrinology and Metabolism. 2004. Vol. 15. № 8. Р. 362-369.
- Numan S., Russell D. S. Discrete expression of insulin receptor substrate-4 mRNA in adult rat brain // Molecular Brain Research. 1999. Vol. 72. № 1. Р. 97-102.
- Schwartz M. W., Sipols A., Marks J. L., Sanacora G., White J. D., Scheurink A., Kahn S. E., Baskin D. G., Woods S. C., Figlewicz D. P. Inhibition of hypothalamic neuropeptide Y gene expression by insulin // Endocrinology. 1992. Vol. 130. № 6. Р. 3608-3616.
- Shibata C., Liou S. Y., Ueki S., Oomura Y. Inhibitory action of insulin on suprachiasmatic nucleus neurons in rat hypothalamic slice preparations // Physiology Behavior. 1986.Vol. 36. № 1. Р. 79-81.
- Wada A., Yokoo H., Yanagita T., Kobayashi H. New twist on neuronal insulin receptor signaling in health, disease and therapeutics // J. Pharmacology Science. 2005. Vol. 99. № 2. Р. 128-143. Yi C.-X., van der Vliet J., Dai J., Yin G., Ru L., Buijs R. M. Ventromedial arcuate nucleus communicates peripheral metabolic information to the suprachiasmatic nucleus // Endocrinology. 2006. Vol. 147. № 1. Р. 283-294.