Views
4 years ago

60 - GB Acosta - Febrero 2010

  • Text
  • Neurologicas
  • Cerebro
  • Acosta
  • Astrocitos
  • Sinapsis
  • Neuronas
  • Cerebro
  • Gliales
  • Enfermedades
  • Desarrollo
  • Glial
  • Neuronal
  • Neuron
Neurobiología de la glía y sus funciones en el desarrollo, la fisiología y la patología del SNC

Dra. Gabriela Beatriz

Dra. Gabriela Beatriz Acosta Chan JR, Watkins TA, Cosgaya JM, Zhang C, Chen L, Reichardt LF, Shooter EM and Barres BA (2004). NGF controls axonal receptivity to myelination by Schwann cells or oligo-dendrocytes. Neuron 43, 183-191. Christopherson KS, Ullian EM, Stokes CC, Mullowney CE, Hell JW, Agah A, Lawler J, Mosher DF, Bornstein P, Barres B.A. (2005). Thrombospondins are astrocytesecreted proteins that promote CNS synaptogenesis. Cell 120, 421-433. Dávalos D, Grutzendler J, Yang G, Kim JV, Zuo Y, Jung S, Littman DR, Dustin ML, Gan WB (2005). ATP mediates rapid microglial response to local brain injury in vivo. Nat. Neurosci. 8, 752–758. Di Giorgio FP, Carrasco MA, Siao MC, Maniatis T, Eggan K (2007). Non-cell autonomous effect of glia on motor neurons in an embryonic stem cell-based ALS model. Nat. Neurosci. 10, 608-614. Dombeck DA, Khabbaz AN, Collman F, Adelman TL, Tank DW (2007). Imaging large-scale neural activity with cellular resolution in awake, mobile mice. Neuron 56, 43-57. Dugas JC, Mandemakers W, Rogers M, Ibrahim A, Daneman R, Barres BA (2008). A novel purification method for CNS projection neurons leads to the identification of brain vascular cells as a source of trophic support for corticospinal motor neurons. J. Neurosci. 28, 8294-8305. Eroglu C, Barres BA, Stevens B (2008). Glia as active participants in the development and function of synapses. In Structural and Functional Organization of the Synapse. Ehlers, J.W., Hell, M.D., eds. (New York: Springer). Eshed Y, Feinberg K, Poliak S, Sabanay H, Sarig-Nadir O, Spiegel I, Bermingham JR, Peles E. (2005). Gliomedin mediates Schwann cell-axon interaction and the molecular assembly of the nodes of Ranvier. Neuron 47, 215-229. Fawcett D. En Bloom and Fawcett-A textbook of histology: Chapman & Hall. New York. London. 1994; pp 355-357 Feng Z, Ko CP (2008). The role of glial cells in the formation and maintenance of the neuromuscular junction. Ann. N Y Acad. Sci. 1132, 19-28. Fonseca M, Zhou J, Botto M, Tenner A (2004). Absence of C1q leads to less neuropathology in transgenic mouse models of Alzheimers disease. J. Neurosci. 24, 457-465. Freedman MR (2005) Glial Control of Synaptogenesis. Cell 120, 292-293. Gordon GR, Mulligan SJ, MacVicar BA (2007). Astrocyte control of the cerebrovasculature. Glia 55, 1214-1221. Gowing G, Philips T, Van Wijmeersch B, Audet JN, Dewil M, Van Den Bosch L, Billiau AD, Robberecht W, Julien JP (2008). Ablation of proliferating microglia does not affect motor neuron degeneration in amyotrophic lateral sclerosis caused by mutant superoxide dismutase. J. Neurosci. 28, 10234-10244. Hanisch UK, Kettenmann H (2007). Microglia: active sensor and versatile effector cells in the normal and pathologic brain. Nat. Neurosci. 10, 1387-1394. Hertz L, Peng L, Dienel GA (2007). Energy metabolism in astrocytes: high rate of oxidative metabolism and spatiotemporal dependence on glycolysis/ glycogenolysis. J. Cereb. Blood Flow Metab. 27, 219-249. Houades V, Rouach N, Ezan P, Kirchhoff F, Koulakoff A, Giaume C (2006). Shapes of astrocyte networks in the juvenile brain. Neuron Glia Biol. 2, 3-14. Huh GS, Boulanger LM, Du H, Riquelme PA, Brotz TM, Shatz CJ (2000). Functional requirement for class I MHC in CNS development and plasticity. Science 290, 2155-2159. Ishibashi T, Dakin KA, Stevens B, Lee PR, Kozlov SV, Stewart CL, Fields RD (2006). Astrocytes promote myelination in response to electrical impulses. Neuron 49, 823-832. Jaiswal JK, Fix M, Takano T, Nedergaard M and Simon SM (2007). Resolving vesicle fusion from lysis to monitor calcium-triggered lysosomal exocytosis in astrocytes. Proc. Natl. Acad. Sci. USA 104, 14151-14156. Kaneko M, Stellwagen D, Malenka RC, Stryker MP (2008). Tumor necrosis factor-alpha mediates one component of competitive, experience-dependent plasticity in developing visual cortex. Neuron 58, 673-680. Kettenmann H, Ranson BR. En Neuroglia, 2nd Ed, Kettenmannn H, Ranson BR, Eds. Oxford University Press. New York, 2005, pp 1-16 Li D, Ropert N, Koulakoff A, Giaume C, Oheim M (2008). Lysosomes are the major vesicular compartment undergoing Ca2+-regulated exocytosis from cortical astrocytes. J. Neurosci. 28, 7648-7658. Liauw J, Hoang S, Choi M, Eroglu C, Choi M, Sun G, Percy M, Widman-Tobriner B, Bliis T, Guzmann RG, et al. (2008). Thrombospondins 1 and 2 are necessary for synaptic plasticity and functional recovery after stroke. J. Cereb. Blood Flow Metab. 28, 1722-1732. Lobsiger CS, Cleveland DW (2007). Glial cells as intrinsic component of non-cell-autonomous neurodegenerative disease. Nat. Neurosci. 10, 1355-1360. Lovatt D, Sonnewald U, Waagepetersen HS, Schousboe A, He W, Lin JH, Han X, Takano T, Wang S, Sim FJ, et al. (2007). The transcriptome and metabolic gene signature of protoplasmic astrocytes in the adult murine cortex. J. Neurosci. 27, 12255-12266. Makita T, Sucov HM, Gariepy CE, Yanagisawa M, Ginty DD (2008). Endothelins are vascular-derived axonal guidance cues for developing sympathetic neurons. Nature 452, 759-763. Mauch DH, Nagler K, Schumacher S, Goritz C, Muller EC, Otto A, Pfrieger FW (2001). CNS synaptogenesis promoted by glia-derived cholesterol. Science 294, 1354-1357. Metea MR, Newman EA. (2006). Glial cells dilate and constrict blood vessels: a mechanism of neurovascular coupling. J. Neurosci. 26, 2862–2870. Miller G. (2005). The Dark Side of Glia. Science 308, 778-781. Miller SD, McMahon EJ, Schreiner B, Bailey SL. (2007). Antigen presentation in the CNS by myeloid dendritic cells drives progression of relapsing experimental autoimmune encephalomyelitis. Ann. N Y Acad. Sci. 1103, 179-191. Müller CM, Best J (1989). Ocular dominance plasticity in adult cat visual cortex after transplantation of cultured astrocytes. Nature 342, 427-430. Mustafa AK, Kim PM, Snyder SH (2004). D-Serine as a putative glial neurotransmitter. Neuron Glia Biol. 1, 275-281. Naftel JP, Ard MD, Fratkin JD, Huctchins JB. En Fundamental Neuroscience for basic and clinical applications. 3rd Edition. Haines DE Editor, Elsevier Inc., Philadelphia, 2006, pp 25-58 Nagai M, Re DB, Nagata T, Chalazonitis A, Jessell TM, Wichterle H, Przedborski S (2007). Astrocytes expressing ALS-linked mutated SOD1 release factors selectively toxic to motor neurons. Nat. Neurosci. 10, 615-622. Nielsen JA, Maric D, Lau P, Barker JL, Hudson LD (2006). Identification of a novel oligodendrocyte cell adhesion protein using gene expression profiling. J. Neurosci. 26, 9881-9891. Nimmerjahn A, Kirchhoff F, Helmchen F (2005). Resting microglial cells are highly dynamic surveillants of brain parenchyma in vivo. Science 308, 1314-1318. Oliet SH, Piet R, Poulain DA, Theodosis DT (2004). Glial modulation of synaptic transmission: Insights from the supraoptic nucleus of the hypothalamus. Glia. 47 (3): 258-267 Pacifici R, Rankin D (2008). Foundation led drug discovery. Scientist 22, 28-29. Pascual O, Casper KB, Kubera C, Zhang J, Revilla- Sanchez R, Sul JY, Takano H, Moss SJ, McCarthy K, Haydon PG (2005). Astrocytic purinergic signaling coordinates synaptic networks. Science 310, 113-116. Paukert M, Bergles DE (2006). Synaptic communication between neurons and NG2+ cells. Curr. Opin. Neurobiol. 16, 515-521. Petzold G, Albeanu D, Sato T, Murthy V (2008). Coupling of neural activity to blood flow in olfactory glomeruli is mediated by astrocytic pathways. Neuron 58, 897-910. Pfrieger FW, Barres BA (1997). Synaptic efficacy enhanced by glial cells in vitro. Science 277, 1684- 1687. Pfrieger FW (2002).Role of glia in synapse development. Curr Opin Neurobiol. 12(5):486-490. Roesch K, Jadhav AP, Trimarchi JM, Stadler MB, Roska B, Sun BB, Cepko CL (2008). The transcriptome of retinal Müller glial cells. J. Comp. Neurol. 509, 225- 238. Santambrogio L, Belyanskaya SL, Fischer FR, Cipriani B, Brosnan CF, Ricciardi-Castagnoli P, Stern LJ, Strominger JL, Riese R (2001). Developmental plasticity of CNS microglia. Proc. Natl. Acad. Sci. USA 98, 6295-6300. Saunders NR, Ek CJ, Habgood MD, Dziegielewska K.M. (2008). Barriers in the brain: a renaissance? Trends Neurosci. 31, 279-286. Schummers J, Yu H, Sur M (2008). Tuned responses of astrocytes and their influence on hemodynamic signals in the visual cortex. Science 320, 1638-1643. Scolari MJ, Acosta GB (2007). D-serine: a new word in the glutamatergic neuron-glial language. Amino Acids, 33 (4): 563-574. 2007 Shen Q, Goderie SK, Jin L, Karanth N, Sun Y, Abramova N, Vincent P, Pumiglia K, Temple S (2004). Endothelial cells stimulate self-renewal and expand neurogenesis of neural stem cells. Science 304, 1338- 1340. Silver J, Miller JH (2004). Regeneration beyond the glial scar. Nat. Rev. Neurosci. 5, 146-156. Somjen G (1988). Nervenkitt: notes on the history of the concept of neuroglia. Glia 1, 2-9. Sorensen A, Moffat K, Thomson C, Barnett SC (2008). Astrocytes, but not olfactory ensheathing cells or Schwann cells, promote myelination of CNS axons in vitro. Glia 56, 750-763. Soulet D, Rivest S (2008). Microglia. Curr. Biol. 18, R506-R508. Stellwagen D, Malenka, RC (2006). Synaptic scaling mediated by glial TNF-alpha. Nature 440, 1054-1059. Stevens B, Allen NJ, Vazquez LE, Howell GR, Christopherson KS, Nouri N, Micheva KD, Mehalow AK, Huberman AD, Stafford B, et al. (2007). The classical complement cascade mediates CNS synapse elimination. Cell 131, 1164-1178. Takano T, Han X, Deane R, Zlokovic B, Nedergaard M (2007). Two-photon imaging of astrocytic Ca2+ signaling and the microvasculature in experimental mice models of Alzheimer's disease (2007). Ann. N Y Acad. Sci. 1097, 40-50. Trajkovic K, Dhaunchak AS, Goncalves JT, Wenzel D, Schneider A, Bunt G, Nave KA, Simons M. (2006). Neuron to glia signaling triggers myelin membrane exocytosis from endosomal storage sites. J. Cell Biol. 172, 937-948. Tran MD, Neary JT (2006). Purinergic signaling induces thrombospondin-1 expression in astrocytes. Proc. Natl. Acad. Sci. USA 103, 9321-9326. Ullian EM, Sapperstein SK, Christopherson KS, Barres BA (2001). Control of synapse number by glia. Science 291, 657-661. Volterra A, Meldolesi J (2005) Astrocytes, from brain glue to communication elements: the revolution continues. Nat Rev Neurosci. 6(8), 626-40. Wang X, Lou N, Xu Q, Tian GF, Peng WG, Han X, Kang J, Takano T, Nedergaard M (2006). Astrocytic Ca2+ signaling evoked by sensory stimulation in vivo. Nat. Neurosci. 9, 816-823. Zhang Z, Chen G, Zhou W, Song A, Xu T, Luo Q, Wang W, Gu XS, Duan S (2007). Regulated ATP release from astrocytes through lysosome exocytosis. Nat. Cell Biol. 9, 945-953. Zlokovic BV (2008). The blood-brain barrier in health and chronic neurodegenerative disorders. Neuron 57, 178-201. Zonta M, Angulo MC, Gobbo S, Rosengarten B, Hossmann KA, Pozzan T, Carmignoto G (2003). Neuron-to-astrocyte signaling is central to the dynamic control of brain microcirculation. Nat. Neurosci. 6, 43-50. 22 // EDITORIAL SCIENS

Biblioteca

Av. García del Río 2585 Piso 12 A - C.A.B.A
+54 11 2092 1646 | info@sciens.com.ar

Editorial Sciens, Todos los Derechos Reservados 2015