Курсовая работа: Белки клеточного цикла в отделах мозга сусликов citellus undulatus на разных стадиях гибернационного
17. Clarke D.D., Sokoloff L. Circulation and energy metabolism of the brain // Basic Neurochemistry: Molecular, Cellular and Meducal Aspects. Sigel G.J., Agranoff B.W., Alberts R.W., Fisher S.K., Uhler M.D. (Eds.) – Phyladelphia:Lippincott – Raven. – 1999. – P 637-669.
18. Christina G. von der Ohe, Craig C. Garner, Corinna Darian-Smith, H. Craig Heller. Synaptic Protein Dynamics in Hibernation. // Neurosciens. – 2007.- Nov 9; 149 (3).
19. Christina G. von der Ohe, Craig C. Garner, Corinna Darian-Smith, H. Craig Heller. Ubiquitos and Temperature - Dependent. // Neurosciens. – 2008.- Apr 9; 152 (4).
20. Copani Agata; Uberti Daniela; Sortino Maria Angela; Bruno Valeria; Nicoletti Ferdinando and Memo Mauritio. Activation of cell-cycle-associated proteins in neuronal death: a mandatory or dispensable path? Trends in Neuroscience. 2001 Jan; 24 (1): 25-31.
21. Copani А.; Sortino M. A.; Nicoletti F. and Stella Giuffrida A. M. Alzheimer’s Disease Research Enters a “New Cycle”: How Significant? // Neurochemical Research. 2002 Feb; 27 (Nos. 1/2): 173-176.
22. Drew K.L., Rice M.E., Kuhn T.B., Smith M.A. Neuroprotective adaptations in hibernation: therapentic implications for ischemia-reperfusion, traumatic brain injury and neurodegenerativedislases // Free Radic. Biol. Med. – 2001. –V. 31. – P. 563-573.
23. Droge W. Free Radicals in the Physiological control of cell Function // Physiol. Rev. – 2002. – V. 82. – P. 47-95.
24. Fang Zhou, Xiongwei Zhu, Rudy J. Castellani,Raphaela Stimmelmayr, George Perry, Mark A. Smith, and Kelly L. // Drew Hibernation, a Model of Neuroprotection // American Journal of Pathology, V. 158, No. 6, June 2001.
25. Frerichs K.U., Kennedy C., Sokoloff L., Hallenbeck J.M. Local cerebral blood flow during hibernation, a model of natural tolerance to «cerebral ishemia» // J Cereb Blood Flow Metab. – 1996. – V. 14. – P. 193-205.
26. Frerichs K.U., Hallenbeck J.M. Hibernation in ground squirrels induces stats and species-specific tolerance to hypoxia and aglycemia: an in vitro study in hippocampal slices // J. Cereb. Blood Flow. Metab. – 1998. – V. 18. – P. 168-175.
27. Hermes-Lima M., Zentenc-Sakin T. Animal response to drastic changes in oxygen akailability and physiological oxidative stress // Comp. Biochem. Physiol. C. Toxicol. Pharmacol. – 2002. – V/ 133/ - P. 537-556.
28. Jens Thorsten Stieler, Torsten Bullman, Franziska Kohl, Brian M. Barnes, Thomas Arendt. Physiological regulation of tau phosphorylation during hibernation. // J Neural Transm. – 2009 (116): 345 – 350.
29. Lipton Р. Ischemic cell death in brain neurons // Physiol. Rev. – 1999. – V. 79. – P. 1431-1568.
30. Nagy Zs. Cell cycle regulatory failure in neurones: causes and concequences. Neurobiology of Aging. 2002 (21): 761-769.
31. Nagy Zs.; Esiri M. M.; Cato A.-M. and Smith A. D. Cell cycle markers in the hippocampus in Alzheimer's disease // Acta Neuropathol. 1997 (94): 6-15.
32. Nurnberger F. The neuroendocrine system in hibernating mammals // Cell and Tissue. Res. – 1995. – V. 28. – P. 391-412.
33. Ohnuma Shin-ichi; Philpott Anna and A Harris William. Cell cycle and cell fate in the nervous system. Current Opinion in Neurobiology. 2001 (11): 66-73.
34. Storey K.B. Turning down the fires of life: metabolic regulation of hibernation and estivation // Mol. mech. metab. Arrest. – 2001. – P. 1-21.
35. Storey K.B., Storey J.M. Metabolic rate depression in animals: transcriptional and translational controls // Biol. Rev. Camp. Philos. Soc. – 2004. – V. 79. – P. 207-233.
36. Toien O., Drew K.L., Chao M.L., Rice M.E. Ascorbat dynamics ana oxygen consumption during arousal from hibernation in arctic ground squirrels // Am. J. Physiol. – 2001. – V. 281. – P. 572-583.
37. Van Brenkelen F., Martin S.L. Reversible depression of transcription during hibernation // J. Comp. Physiol. (B). – 2002-V. 172. – P. 355-361.
38. Wang L.C.H. Energetic and field aspects of mammalian torpor: the Richardson groundsquirrel // Strategus in Cold: Natural Torpidity and Thermogenesis // Eds L.C.H. Wang, J.W. Hudson, N.Y.: Acad. Press. – 1978. – P. 109-145.
39. Wang L.C.H., Lee T.F. Torpor and hibernation in mammals: metabolic, physiological, and biochemical adaptations // Handbook of physiology: Oxford univer. Press., 1996. - № 4. – P. 507-531.
40. Yeh J., Tam C.F., Catuirs E., Le T.T., Papa V., Pena L., Vasquez M., Vu C., Wang S., Lopez G.A. Changes in karious plasms lipid components, glucose, and insulin in spermophilus lateralis during hibernation // Comp. Biochem. Physiol. B. Biochem. Mol. Biol. – 1996. – V. 111. – P. 651-663.
41. Young J.S., Woodside J.V. Antioxidants in health and disease // J. Clin. Pathol. – 2001. V. 54. – P. 176-186.
42. Zhou G., Zhu X., Castellani R.J., Stinnelmayr R., Perry G., Smith M.A., Drew K. Hibernation, a model of neuroprotection // Am. J. Pathol. – 2001. – V. 158. – P. 2145-2151.