Диссертация (1151316), страница 48
Текст из файла (страница 48)
Menet, Y. Gimenez, M. Ribotta et al. // Thejournal of neuroscience. – 2001. – V. 21. – Р. 6147–6158.233. Bachoo, R.M. Molecular diversity of astrocytes with implications forneurological disorders / R.M. Bachoo, R.S. Kim, K.L. Ligon et. al.
//301Proceedings of the National Academy of Sciences of the USA. – 2004. –V. 22(101). – Р. 8384–8389.234. Sofroniew, M.V. Reactive astrocytes in neural repair and protection /Sofroniew M.V. // Neuroscientist. – 2005. – V. 5(11). – Р. 400–407.235. Garcia-Segura, L.M. Steroids and glial cell function / L.M.
Garcia-Segura,R.C. Melcangi // Glia. – 2006. – V. 6(54). – Р. 485–498.236. Nishida, H. Direct astrocytic contacts regulate local maturation of dendriticspines / H. Nishida, S. Okabe // The journal of neuroscience. – 2007. – V. 2(27).– Р. 331–340.237. Hochstim, C. Identification of positionally distinct astrocyte subtypes whoseidentities are specified by a homeodomain code / C. Hochstim, B. Deneen,A. Lukaszewicz et al.
// Cell. – 2008. – V. 3(133). – P. 510–522.238. Ventura, R. Three-dimensional relationships between hippocampal synapsesand astrocytes / R. Ventura, K.M. Harris // The journal of neuroscience. – 1999.– V. 16(19). – Р. 6897–6906.239. Araque, A. Tripartite synapses: glia, the unacknowledged partner / A. Araque,V.
Parpura, R.P. Sanzgiri, P.G. Haydon // Trends in neurosciences. – 1999. –V. 22. – Р. 208–215.240. Xu-Friedman, M.A. Three-dimensional comparison of ultrastructuralcharacteristics at depressing and facilitating synapses onto cerebellar Purkinjecells / M.A. Xu-Friedman, K.M. Harris, W.G. Regehr // The journal ofneuroscience.
– 2001. – V. 17(21). – P. 6666–6672.241. Andreiuolo, F. GFAPdelta immunostaining improves visualization of normaland pathologic astrocytic heterogeneity / F. Andreiuolo, M.P. Junier, E.M. Hoiet. al. // Neuropathology. – 2009. – V. 29. – Р. 31–39.242. Yang, Y. Contribution of astrocytes to hippocampal long-term potentiationthrough release of D-serine / Y. Yang, W. Ge, Y. Chen et al. // Proceedings ofthe National Academy of Sciences of the USA. – 2003. – V.
25(100). –Р. 15194–15199.302243. Allen, N.J. Signaling between glia and neurons: focus on synaptic plasticity /N.J. Allen, B.A. Barres // Current opinion in neurobiology. – 2005. – V. 5(15). –Р. 542–548.244. Seth, P. Astrocyte, the star avatar: redefined / P. Seth, N. Koul // Journal ofBiosciences. – 2008. – V. 3(33). – Р. 405–421.245. Fellin, T. Communication between neurons and astrocytes: relevance to themodulation of synaptic and network activity / T.
Fellin // Journal ofneurochemistry. – 2009. – V. 3(108). – Р. 533–544.246. Ullian, E.M. Control of synapse number by glia / E.M. Ullian,S.K. Sapperstein, K.S. Christopherson, B.A. Barres // Science. – 2001. – V. 291.– Р. 657–661.247. Ogata, K. Structural and quantitative analysis of astrocytes in the mousehippocampus / K.
Ogata, T. Kosaka // Neuroscience. – 2002. – V. 1(113). –Р. 221–233.248. Bushong, E.A. Protoplasmic astrocytes in CA1 stratum radiatum occupyseparate anatomical domains / E.A. Bushong, M.E. Martone, Y.Z. Jones,M.H. Ellisman // The journal of neuroscience. – 2002. – V. 1(22). – P. 183– 92.249. Niigcrl, U.V. Bidirectional activity-dependent morphological plasticity inhippocampal neurons / U.V. Niigcrl, N. Ebcrhorn, S.B. Cambridge,T.Bonhocffer // Neuron. – 2004. – V. 44. – Р. 759–767.250.
Wang, X. Astrocytic Ca2+ signaling evoked by sensory stimulation in vivo /X. Wang, N. Lou, Q. Xu et. al. // Nature neuroscience. – 2006. – V. 6(9). –Р. 816–823.251. Halassa, M.M. Synaptic islands defined by the territory of a single astrocyte /M.M. Halassa, T. Fellin, H. Takano et. al. // The journal of neuroscience. –2007. – V. 24(27).
– Р. 6473–6477.252. Murai, K.K. Control of hippocampal dendritic spine morphology throughephrin-A3/EphA4 signaling / K.K. Murai, L.N. Nguyen, F. Lrie et. al. // Natureneuroscience. – 2003. – V. 2(6). – Р. 153–160.303253. Zhou, Q. Shrinkage of dendritic spines associated with long-term depressionof hippocampal synapses / Q. Zhou, K.J. Hoinma, M.M. Poo // Neuron. – 2004.– V.
5(44). – Р. 149–157.254. Rouach, N. Astroglial metabolic networks sustain hippocampal synaptictransmission/ N. Rouach, A. Koulakoff, V. Abudara et. al. // Science. – 2008. –V. 532. – Р. 1551–1555.255. Verkhratsky, A. Calcium signalling in sensory neurones and peripheral glia inthe context of diabetic neuropathies / A.
Verkhratsky, P. Fernyhough // CellCalcium. – 2014. – V. 5(56). – P. 362–71.256. Halassa, M.M. The tripartite synapse: roles for gliotransmission in healthand disease / M.M. Halassa, T. Fellin, P.G. Haydon // Trends in molecularmedicine. – 2007. – V. 2(13). – P. 54–63.257. Halassa, M.M. Tripartite synapses: roles for astrocytic purines in the controlof synaptic physiology and behavior / M.M. Halassa, T.
Fellin, P.G. Haydon //Neuropharmacology. – 2009. – V. 4(57). – Р. 343–346.258. Song, H.J. Neural stem cells from adult hippocampus develop essentialproperties of functional CNS neurons / H.J. Song, C.F. Stevens, F.H. Gage //Nature neuroscience. – 2002. – V. 5(5). – Р. 438–445.259. Benediktsson, A.M. Ballistic labeling and dynamic imaging of astrocytes inorganotypic hippocampal slice cultures / A.M. Benediktsson, S.J. Schachteie,S.H. Green, M.E. Dailey // Journal of neuroscience methods.
– 2005. –V. 1(141). – Р. 41–53.260. Pekny, M. Astrocyte intermediate filaments in CNS pathologies andregeneration / M. Pekny, M. Pekna // The journal of pathology. – 2004. –V. 4(204). – Р. 428–437.261. Sul, J.Y. Astrocytic connectivity in the hippocampus / J.Y. Sul, G. Orosz,R.S. Givens, P.G. Haydon // Neuron glia biology. – 2004. – V. 1(1). – Р.
3–11.262. Koehler, R.C. Astrocytes and the regulation of cerebral blood flow /R.C. Koehler, R.J. Roman, D.R. Harder // Trends in neuroscience. – 2009. –V. 3(32). – Р. 160–169.304263. Loncarevic-Vasiljkovic, N. Changes in markers of neuronal and glialplasticity after cortical injury induced by food restriction / N. LoncarevicVasiljkovic, V. Pesic, N. Tanic et.
al. // Experimental neurology. – 2009. – V.1(220). – Р. 198–206.264. Eddleston, M. Molecular profile of reactive astrocytes--implications for theirrole in neurologic disease / M. Eddleston, L. Mucke // Neuroscience. – 1993. –V. 1(54). – Р. 15–36.265. Levesque, L. Ligand specific effects on aluminum incorporation and toxicity inneurons and astrocytes / L. Levesque, C.A. Mizzen, D.R. McLachlan, P.E. Fraser //Brain research. – 2000. – V. 2(877).
– Р. 191–202.266. Schiffer, D. Astrogliosis in ALS: possible interpretations according topathogenetic hypotheses / D. Schiffer, V. Fiano // Amyotrophic lateral sclerosis andother motor neuron disorders. – 2004. – V. 1(5). – Р. 22–25.267. Correa-Cerro, L.S. Molecular mechanisms of astrogliosis: new approacheswith mouse genetics / L.S. Correa-Cerro, J.W.
Mandell // Journal ofneuropathology and experimental neurology. – 2007. – V. 3(66). – Р. 169–176.268. Guo, Y. Astrocytic pathology in the immune-mediated motor neuron injury /Y. Guo, Y. Liu, L. Xu et. al. // Amyotrophic lateral sclerosis and other motorneuron disorders. – 2007. – V. 4(8). – Р. 230–234.269. Acarin, L. Astroglial nitration after postnatal excitotoxic damage: correlationwith nitric oxide sources, cytoskeletal, apoptotic and antioxidant proteins /L. Acarin, H. Peluffo, L. Barbeito et. al.
// Journal of neurotrauma. – 2005. –V. 1(22). – Р. 189–200.270. Robb, S.J. An in vitro model for analysis of oxidative death in primary mouseastrocytes / S.J. Robb, J.R. Connor // Brain research. – 2007. – V. 1–2(788). –Р. 125–132.271. Wanner, I.B. A new in vitro model of the glial scar inhibits axon growth /I.B. Wanner, A. Deik, M. Torres et. al. // Glia. – 2008. – V. 15(56). – Р.
1691–1709.305272. Chvatal, A. Pathological potential of astroglia / A Chvatal, M. Anderova,H. Neprasova et. al. // Physiological research. – 2008. – V. 3(57). – P. 101–110.273. Fujita, T. P2Y1 receptor signaling enhances neuroprotection by astrocytesagainst oxidative stress via IL-6 release in hippocampal cultures / T. Fujita,H. Tozaki-Saitoh, K. Inoue // Glia. – 2009. – V. 3(57). – Р. 244–257.274. Brambilla, R.
Astrocytes play a key role in EAE pathophysiology byorchestrating in the CNS the inflammatory response of resident and peripheralimmune cells and by suppressing remyelination / R. Brambilla, P.D. Morton,J.J. Ashbaugh et. al. // Glia. – 2014. – V. 3(62). – P. 452–467.275. Alberts, B. The Cytoskeleton / B. Alberts, D. Bray, J. Lewis et. al.
// MolecularBiology of the cell. – N.Y.: Garland Pub. – 1994. – P. 787–803.276. Панков, Р.Г. Цитоскелет – промежуточные филаменты / Р.Г. Панков,Г.Г. Марков // Успехи молекулярной биологии. – 1988. – № 6. – C. 32–66.277. Klymovsky, M. Intermediate filaments: new proteins, some answers, morequestion / M. Klymovsky // Current opinon in cell biology.– 1995.
– V. 1(7). –P. 46–54.278. Пилипенко, Б.Ф. Немышечные двигательные системы / Б.Ф. Пилипенко,С.А. Бурнашева – М.:ВИНИТИ, 1989. – 175 с.279. Aebi, U. Unifying principles in intermediate filament (IF) structure and assembly /U. Aebi, M. Harner, J. Troncoso et. al. // Protoplasma. – 1988. – V. 145.
– P. 73–81.280. Cumming, R. Compartmentalization of neuronal cytoskeletal proteins /R. Cumming, R. Burgoyne // Bioscience reports. – 1983. – V. 3(11). – P. 997–1006.281. Lee, M. Neuronal intermediate filaments / M. Lee, D. Cleveland // Annual reviewof neuroscince. – 1996. – V. 19. – P. 187–217.282. Chou, Y.H.
Intermediate filaments and cytoplasmic networking: newconnections and more functions / Y.H. Chou, O. Skalli, R. Goldman // Currentopinion in cell biology. – 1997. – V. 1(9). – P. 49–53.283. Hermann, H. Intermediate filaments: molecular structure, assembly mechanism,and integration into functionally distinct intracellular scaffolds / H.