請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/39007完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 楊西苑 教授(Hsie-Yuan Yang) | |
| dc.contributor.author | Ma-Hsuan Ma | en |
| dc.contributor.author | 馬瑪宣 | zh_TW |
| dc.date.accessioned | 2021-06-13T16:57:06Z | - |
| dc.date.available | 2005-07-04 | |
| dc.date.copyright | 2005-07-04 | |
| dc.date.issued | 2005 | |
| dc.date.submitted | 2005-05-29 | |
| dc.identifier.citation | 參考資料
Almazan, G., J.M. Vela, E. Molina-Holgado and C. Guaza(2001)Re-evaluation of nestin as a marker of oligodendrocyte lineage cells. Microsc. Res. Tech. 52: 753-765 Alonso, G., A. Privat(1993)Reactive astrocytes involved in the formation of lesion scars differ in the mediobasal hypothalamus and in other forebrain. J. Neurosci. Res. 34:523-538 Asher, R. A., D. A. Morgenstern, P. S. Fidler, K. H. Adcock, A. Oohira, J. E. Braistead, J. M. Levine, R. U. Margolis, J. H. Rogers, and James W. Fawcett (2000) Neurocan is upregulated in injured brain and in cytokine-treated astrocytes. J. Neurosci. 20 : 2427–2438 Baffy, G., L. Yang, S. Raj, D.R. Manning, and J.R. Williamson (1994) G protein coupling to the thrombin receptor in Chinese hamster lung fibroblasts. J. Biol. Chem. 269:8483-8487 Bandtlow, C., T. Zachleder and M.E. Schwab(1990)Oligodendrocytes arrest neurite growth by contact inhibition. J. Neurosci. 10:3837-3848 Beach, T.G., R. Walker and E.G. McGeer (1989) Patterns of gliosis in Alzheimer’s disease and aging cerebrum. Glia 2:420-436 Beecher, K.L., T.T. Andersen, J.W. Fenton and B.W. Festoff (1994) Thrombin receptor peptides induce shape change in neonatal murine astrocytes in culture. J. Neurosci. Res. 37:108-115 Berry, M., W.L. Maxwell, A. Logan, A. Mathewson, P. McConnell, D.E. Ashhurst and G.H. Thomas(1983)Deposition of scar tissue in the central nervous system. Acta Neurochir. Suppl.(Wien)32:31-53 Bevilacqua, M.P. and M.A.Gimbrone (1987) Jr Inducible endothelial functions in inflammation and coagulation. Semin. Thromb. Hemost. 13:425–433 Bovolenta, P., F. Wandosell and M. Nieto-Sampedro(1992)CNS glial scar tissue:a source of molecules which inhibit central neurite outgrowth. Prog. Brain Res. 94:367-379 Bouton, M.C., M. Jandrot-Perrus, S. Moog, J.P. Cazenave, M.C. Guillin, and F. Lanza(1995)Thrombin interaction with a recombinant N-terminal extracellular domain of the thrombin receptor in an acellular system. Biochem J 305:635–641 Brock, T.A. and E.L. Capasso (1989) GTP gamma S increases thrombin mediated inositol triphosphate accumulation in permeabilized human endothelial cells, Am. Rev. Respir. Dis. 140:1121-1125 Brook, G.A., A. Perez-Bouza, J. Noth, W. Nacimiento (1999) Astrocytes re-expression nestin in deafferented target territories of the adult rat hippocampus. NeuroReport 10:1007-1011 Cattaneo, C., and R. McKay (1990) Proliferation and differentiation of neuronal stem cells regulated by nerve growth factor. Nature 347:762-765 Cavanaugh, K.P., D. Gurwitz, D.D. Cunningham and R.A. Bradshaw(1990)Reciprocal modulation of astrocyte stellation by thrombin and protease nexin-1. J. Neurochem. 54 : 1735-1743 Chen, L. B. and J. M. Buchanen(1975)Mitogenic activity of blood components. Thrombin and prothrombin. Proc. Natl. Acad. Sci. USA 72:131-135 Clark, S.R., A.K. Shetty, J.L. Bradley and D.A. Turner (1994) Reactive astrocytes express the embryonic intermediate neurofilament nestin. NeuroReport 5:1885-1888 Colman, R.W., V.J. Marder, E.W. Salzman and J. Hirsh(1994)In Hemostasis and Thrombosis (eds Colman, R.W., V.J. Marder, E.W. Salzman and J. Hirsh ) 3–18 (Lippincott, Philadelphia,) Cote, F., J.F. Collard and J.P. Julien 1993)Progressive neuronopathy in transgenic mice expressing the human neurofilament heavy gene:a mouse model of amyotrophic lateral sclerosis. Cell 73:35-46 Coughlin, S. R.(1994)Molecular mechanisms of thrombin signaling. Semin Hematol, 31(4):270-277 Review Dahlstrand, J., L.B. Zimmerman, R.D. McKay and U. Lendahl (1992) Characterization of the human nestin gene reveals a close evolutionary relationship to neurofilaments. J. Cell Sci. 103: 589–597 De Marco, L., M. Mazzucato, A..Masotti, J.W. Fenton and Z.M. Ruggeri(1991)Function of glycoprotein Ib alpha in platelet activation induced by alpha-thrombin. J. Biol. Chem. 266:23776-23783 Barry, D. and K. McDermott(2005)Differentiation of radial glia from radial precursor cells and transformation into astrocytes in the developing rat spinal cord. Glia 50 : 187–197 Dhe-Paganon, S., E.D. Werner, Y.I. Chi and S.E. Shoelson(2002)Structure of the globular tail of nuclear lamin. J.Biol. Chem. 277(20):17381-17384 Doyle, K.L., M. Khan and A.M. Cunningham ( 2001) Expression of the intermediate filament protein nestin by sustentacular cells in mature olfactory neuroepithelium. J. Comp. Neurol. 437:186-195 Drapeau, J., V. El-Helou , R. Clement , S. Bel-Hadj , H. Gosselin , L.E. Trudeau , L. Villeneuve and A. Calderone(2005) Nestin-expressing neural stem cells identified in the scar following myocardial infarction. J. Cell Physiol. 2004 Dec 16; [Epub ahead of print] Duggal, N., R. Schmidt-Kaster and A.M. Hakim (1997) Nestin expression in reactive astrocytes following focal cerebral ischemia in rats. Brain Res. 768:1-9 Ehrenreich, H., T. Costa, K.A. Clouse, R.M. Pluta, Y. Ogino, J.E. Coligan and P.R. Burd (1993) Thrombin is a regulator of endothelin-1. Brain Res. 600:201-207 Eliasson, C., C. Sahlgren, C.H. Berthold, J. Stakeberg, J.E. Celis, C. Betsholtz, J.E. Eriksson and M. Pekny(1999) Intermediate filament protein partnership in astrocytes. J. Biol Chem. 274:23996-24006 Esmon, C. T., K. Fukudome, T. Mather, W. Bode, L. M. Regan, D. J. Stearns-Kurosawa and S. Kurosawa (1999) Inflammation, sepsis, and coagulation. Haematologica 84:254–259 Esmon, C.T.(2004)Crosstalk between inflammation and thrombosis. Maturitas. 47(4):305-314 Fawcett, J.W. and R.A. Asher(1999)The glial scar and central nervous system repair. Brain Res. Bull. 49:377-391 Fedoroff, S. (1986) Prenatal ontogenesis of astrocytes, Astrocytes: development, morphology, and regional specialization of astrocytes (Fedoroff, S. & Vernadakis, A.) pp. 35274, Academic Press, Orlando. Fernaud-Espinosa, I., N. Nieto-Sampedro and P. Bolventa(1993)Differential activation of microglia and astrocytes in aniso- and isomorphic gliotic tissue. Glia 8:277-291 Fitch, M.T. and J. Silver(1999)Beyond the glial scar:cellular and molecular mechanisms by which glial cells contribute to CNS regenerative failure. In CNS Regeneration, M.H. Tuszynski and J. Kordower, eds., pp.55-58, Academic Press, San Diego Frisen, J., C.B. Johansson, C. Torok, M. Risling, U. Lendahl(1995)Rapid, widespread, and longlasting induction of nestin contributes to the generation of glial scar tissue after CNS injury. J. Cell Biol. 131:453-464 Fuchs, E. and K. Weber.(1994)Intermediate filaments:structure, dynamics, function and disease. Ann. Rev. Biochem. 63:345-482 Giesen P.L., U. Rauch, B. Bohrmann, D. Kling, M. Roque, J.T. Fallon, J.J. Badimon, J. Himber, M.A. Riederer and Y. Nemerson (1999) Blood-borne tissue factor: another view of thrombosis. Proc. Natl Acad. Sci. USA 96:2311–2315 Giulian, D., J. Woodward, D.G.Young, J.F. Krebs and L.B. Lachman (1988) Interleukin-1 injected into mammalian brain stimulates astrogliosis and neovascularization. J. Neurosci. 8:2485–2490 Grand, R.J.A., A.S. Turnell and P.W. Grabham (1996) Cellular consequences of thrombin-receptor activation. Biochem. J. 313:353-368 Gray, W.P. and L.E. Sundstrom (1998). Kainic acid increases the proliferation of granule cell progenitors in the dentate gyrus of the adult rat. Brain Res. 790:52-59 Grondin, P., M. Plantavid, C. Sultan, M. Breton, G. Mauco and H. Chap (1991) Interaction of pp60c-src, phospholipase C, inositol-lipid, and diacylglycerol kinases with the cytoskeletons of thrombin-stimulated platelets, J. Biol. Chem. 266:15 705-15 709 Gerace, L., A, Blum and G. Blobel.(1978)Immunocytochemical localization of the major peptides of the nuclear pore complex-lamina fraction. Interface and mitotic distribution. J. Cell Biol. 79:546-566 Glenn, K. C. and D.D. Cunningham(1979)Thrombin stimulated cell division involves proteolysis of its cell surface receoptors. Nature 278:711-714 Glenn, K. C. and D.D. Cunningham(1990)Neurite outgrowth activity of protease nexin-1 on neuroblastoma cells requires thrombin inhibition. J. Cell. Physiol. 142:155-162 Goldman, R.D., A.E. Goldman, K. Green, J. Jones, N. Lieska and H.Y. Yang(1985)Intermediate filaments: possible functions as cytoskeletal connecting links between the nucleus and the cell surface. Ann. N.Y. Acad. Sci. 455:1-17 Goldman, R.D., A.E. Goldman, K.J. Green, J.C. Jones, S.M. Jones and H.Y. Yang(1986)Intermediate filament networks:organization and possible functions of a diverse group of cytoskeletal elements. J. Cell Sci. Suppl. 5:69-97 Goldman, R.D. and P.M. Steinert(1990)Cellular and Molecular Biology of Intermediate Filaments. Plenum Press, New York. Grand, R.J.A., P.W. Grabham, M. J. Gallimore and P. H. Gallimore(1989) Modulation of morphological differentiation of human neuroepithelial cells by serineprotease:independence from blood coagulation. EMBO J. 8:2209-2215 Gu, L.H., Y. Ichiki, M. Sato and Y. Kitajima(2002)A novel nonsense mutation at E106 of the 2B rod domain of keratin 14 causes dominant epidermolysis bullosa simplex. J Dermatol. 29(3):136-45 Ha, K.S. and J.H. Exton (1993) Differential translocation of protein kinase C isozymes by thrombin and platelet-derived growth factor. A possible function for phopshatidylcholine-derived diacylglycerol. J. Biol. Chem. 268:10 534-10 539 Hansen, L.A., D.M. Amstrong and R. D. Terry (1987) An immunohistochemical quantification of fibrous astrocytes in the aging human cerebral cortex. Neurobiol. Aging 8:1-6 Hatten, M.E., R.K. Liem, M.L. Shelanski and C.A. Mason (1991) Astroglia in injury. Glia 4:233-243 Hayashi, M., R. Hayashi, H. Tanii, K. Hashimoto and A.J. Patel (1988) The influence of nerve cells on the development of astrocytes. Dev.Brain Res. 41:37-42 Herrmann, H. and U. Aebi.(2000)Intermediate filaments and their associates:multi-talented structural elements specifying cytoarchitecture and cytodynamics. Curr. Opin. Cell Biol. 12:79-90 Hockfield, S, R.D. Mckay (1985) Identification of major cell classes in the developing mammalian nervous system. J Neurosci 5 : 3310-3328 Hof, P.R., B.D. Trapp, J.D. Vellis, L. Claudio and D.R. Colman(1999)The cellular components of nervous tissue. In Fundamental Neuroscience, M.J. Zigmond, F.E. Bloom, S.C. Landis, J.L. Roberts and L.R. Squire, ends., pp. 57-59, Academic Press, San Diego Holmin, S., P. Almqvist, U. Lendahl, and T. Mathiesen (1997) Adult nestinexpressing subependymal cells differentiate to astrocytes in response to brain injury. Eur. J. Neurosci. 9 : 65–75 Huang, C.L. and H.E. Ives(1987)Growth inhibition by protein kinase C late in mitogenesis. Nature 329:849-850 Huang, C.L. and H.E. Ives (1989) Guanosine 5¢-O-(3-thiotrisphosphate) potentiates both thrombin and platelet-derived growth factor-induced inositol phosphate release in permeabilized vascular smooth muscle cells. Signaling mechanisms distinguished by sensitivity to pertussis toxin and phorbol esters. J. Biol. Chem. 264:4391-4397 Hung, D.T., Y.H. Wong, T.K.H. Vu and S.R. Coughlin(1992)The cloned platelet thrombin receptor couples to at least two distinct effectors to stimulate both phosphoinositide hydrolysis and inhibit adenylyl cyclase. J. Biol. Chem. 353:20831-20834 Ishihara, H., A.J. Connolly, D. Zeng, M.L. Kahn, Y.W. Zheng, C. Timmons, T. Tram, and S.R. Coughlin (1997) Protease-activated receptor 3 is a second thrombin receptor in humans. Nature 386:502-506 Jalink, K. and W.H. Moolenaar (1992) Thrombin receptor activation causes rapid neural cell rounding and neurite retraction independent of classic second messengers. J. Cell Biol. 118:411-419 Janzer, R.C. and M.C. Raff (1987) Astrocytes induce blood-brain barrier properties in endothelial cells. Nature 325:253-257 Jerry, S. and J.H. Miller(2004)Regeneration beyond the glial scar. Nature 5:146-156 Jin, G., T. Hayashi, J. Kawagoe, T. Takizawa, T. Nagata, I. Nagano, M. Syoji and K. Abe(2005) Deficiency of PAR-2 gene increases acute focal ischemic brain injury. J. Cereb. Blood Flow Metab. 2005 Jan 12; [Epub ahead of print] Johansson, C.B., S. Momma, D.L. Clarke, M. Risling, U. Lendahl and J. Frisen(1999) Identification of a neural stem cell in the adult mammalian central nervous system. Cell 96: 25-34 Jones, J.C.R., A.E. Goldman, H.Y. Yang and R.D. Goldman(1985)Distribution of intermediate filaments and their associated proteins during various stages of the mammalian cell cycle. Ann. N.Y. Acad. Sci. 455:695-698 Kahn, M.L., Y.W. Zheng, W. Huang, V. Bigornia, D. Zeng, S. Moff, R.V. Jr. Farese, C. Tam and S.R. Coughlin (1998) A dual thrombin receptor system for platelet activation. Nature 394:690-694 Kaufmann, R., S. Patt, M. Zieger, R. Kraft, S. Tausch, P. Henklein and G. Nowak(2000)The two-receptor system PAR-1/PAR-4 mediates alpha-thrombin-induced [Ca2+]i mobilization in human astrocytoma cells. J. Cancer Res. Clin. Oncol. 126: 91–94 Kozlova, E.N. (2003) Differentiation and migration of astrocytes in the spinal cord following dorsal root injury in the adult rat. Eur. J. Neurosci.17:782–790 Kriho, V., H.Y. Yang , C.M. Lue, N. Lieska and G.D. Pappas(1996)An early developmental marker for radial glia in rat spinal cord. Proc. Microscopy and Microanalysis pp. 36-37 Kristina, K.H., S. Mahmoud and D.H. Morley(2004)Tethered ligand-derived peptides of proteinase-activated receptor 3 (PAR3) activate PAR1 and PAR2 in Jurkat T cells. Immunology 112:183-190 Krum, J..M. and J..M. Rosenstein(1999)Transient coexpression of nestin, GFAP, and vascular endothelial growth factor in mature reactive astroglia following neural grafting or brain wounds. Exp. Neurol. 160:348-360 Lagord, C., M. Berry and A. Logan (2002) Expression of TGFβ2 but not TGFβ1 correlates with the deposition of scar tissue in the lesioned spinal cord. Mol. Cell. Neurosci. 20:69–92 Latov, N., G. Nilaver, E.A. Zimmerman, W.G. Johnson, A.J. Silverman, R. Defendini and L. Cote (1979) Fibrillary astrocytes proliferate in response to brain injury. Dev. Biol. 72:381-384 Lee, C.Y., G.D. Pappas, V. Kriho, B.M. Huang and H.Y. Yang(2003)Proliferation of a subpopulation of reactive astrocytes following needle-insertion lesion in rat. Neurol. Res. 25:767-776 Lee, J., W. Duan, M.P. Mattson (2002a) Evidence that brain-derived neurotrophic factor is required for basal neurogenesis and mediates, in part, the enhancement of neurogenesis by dietary restriction in the hippocampus of adult mice. J. Neurochem. 82:1367-1375 Lee, J., K.B Seroogy., M.P. Mattson (2002b) Dietary restriction enhances neurotrophin expression and neurogenesis in the hippocampus of adult mice. J. Neurochem. 80:539-547 Lee, K.R., G.P. Colon, A.L. Betz, R.F. Keep, S. Kim and J.T. Hoff (1996) Edema from intracerebral hemorrhage : role of thrombin. J. Neurosurg. 84 : 91-96 Lendahl, U., L.B. Zimmerman and R.D. McKay(1990)CNS stem cells express a new class of intermediate filament protein. Cell 60: 585-595 Li, R. Y., F. Gaits, J.M. Ragab-Thomas, J. Maclouf, J.P. Caen, S. Levy-Toledano and H. Chap (1997) Protein tyrosine phosphatase SHP-1 fails to associate with cytoskeleton but is normally phosphorylated upon thrombin stimulation of thrombasthenic platelets, Thromb.Haemost. 77:150-154 Li Y., and M. Chopp(1999)Temporal profile of nestin expression after focal cerebral ischemia in adult rats, Brain Res. 838 : 1-10 Lin, R.C.S., D.F. Matesic, M. Marvin, R.D. McKay and O. Brustle(1995) Re-expression of the intermediate filament nestin in reactive astrocytes. Neurobiol. Dis. 2:79-85 Lin, R, D. Matesic, M. Marvin, R. McKay and O. Brustle (1995) Reexpression of the intermediate filament nestin in reactive astrocytes. Neurobiol. Dis. 2:79-89 Logan, A., S.A. Frautschy, A.M. Gonzalez and A. Baird (1992) A time course for the focal elevation of synthesis of basic fibroblast growth factor and one if its high-affinity receptors (flg) following a localized cortical brain injury. J. Neurosci. 12:3828–3837 Lowenstein, D.H., M.S. Seren and F.M. Longo (1993) Prolonged increases in neurotrophic activity associated with kainate-induced hippocampal synaptic reorganization. Neurosci. 56 : 597-604 Malhotra, S.K., T.K. Shnitka, and J. Elbrink(1990)Reactive astrocytes – a review. Cytobios. 61:133-160 Miller, R.H., B.P. Fulton and M.C. Ralf(1989)A novel type of glial cell associated with nodes of Ranvier in rat Optic nerve. Eur. J. Neurosci. 1:172-180 Mocchetti, I., S.J. Rabin, A.M. Colangelo, S.R. Whittemore, and J.R. Wrathall (1996) Increased basic fibroblast growth factor expression following contusive spinal cord injury. Exp. Neurol. 41:154–164 Moon, L.D., J.E. Brecknell, R.J. Franklin, S.B. Dunnett and J.W. Fawcett(2000)Robust regeneration of CNS axons through a track depleted of CNS glia. Exp. Neurol. 161:49-66 Moon, L.D.F. and J.W. Fawcett (2001) Reduction in CNS scar formation without concomitant increase in axon regeneration following treatment of adult rat brain with a combination of antibodies to TGFβ1 and β2. Eur. J.Neurosci. 14:1667–1677 Morshead, C.M., B.A. Reynolds, C.G. Craig, M.W. McBurney, W.A. Staines, D. Morassutti, S. Weiss and D. van der Kooy(1994)Neural stem cells in the adult mammalian forebrain:a relatively quiescent subpopulation of subependymal cells. Neuron 13:1071-1082 Mugnaini, E. (1986) Cell junctions of astrocyte, ependyma, and related cells in the mammalian cerebral nervous system, with emphasis on the hypothesis of a generalized functional syncytium of supporting cells, in Astrocytes (Fedoroff, S. & Vernadakis, A., eds) pp. 329-377, Academic Press, Orlando. Nakamura T., G. Xi, Y. Hua, J. T. Hoff and R.F. Keep(2003)Nestin expression after experimental intracerebral hemorrhage. Brain Res. 981 : 108-117 Nakanishi-Matsui M., Y.W. Zheng, D.J. Sulciner, E.J. Weiss, M.J. Ludeman and S.R. Coughlin(2000)PAR3 is a cofactor for PAR4 activation by thrombin. Nature 404: 609-613 Nelson R.B. and R. Siman(1990)Thrombin and its inhibitors regulate morphological and biochemical differentiation of astrocytes in vitro. Dev. Brain Res. 54:93-104 Neveu, I., F. Jehan, M. Jandrot-Perrus, D. Wion and P. Brachet (1993) Enhancement of the synthesis and secretion of nerve growth factor in primary cultures of glial cells by proteases: a possible involvement of thrombin. J. Neurochem. 60:858-867 Nystedt, S., K. Emilsson, C. Wahlestodt and J. Sundelin (1994) Molecular cloning of a potential proteinase activated receptor. Proc. Natl. Acad. Sci. USA 91:9208–9212 Offermanns, S., K.L. Laugwitz, K. Spicher and G. Schultz(1994)G proteins of the G12 family are activated via thromboxane A2 and thrombin receptors in human platelets. Proc. Natl. Acad. Sci. U.S.A. 91:504-508 Osterud, B. (1998) Tissue factor expression by monocytes: regulation and pathophysiological roles. Blood Coag. Fibrin. 9 (Suppl. 1), S9–S14 Parent, J.M., T.W. Yu, R.T. Leibowitz, D.H. Geschwind, R.S. Sloviter and D.H. Lowenstein (1997) Dentate granule cell neurogenesis is increased by seizures and contributes to aberrant network reorganization in the adult rat hippocampus. J. Neurosci. 17:3727-3788 Perraud, F., F. Besnard, M. Sensenbrenner and G. Labourdette(1987)Thrombin is a potent mitogen for rat astroblasts but not for oligodendrocytes and neuroblasts in primary culture. Int. J. Dev. Neurosci. 5:181-188 Pike, C.J., P.J. Vaughan, D.D. Cunningham and C.W. Cotman (1996) Thrombin attenuates neuronal cell death and modulates astrocyte reactivity induced by beta-amyloid in vitro, J. Neurochem. 66:13274–13282 Post, G.R., L.R. Collins, E.D. Kennedy, S.A. Moskowitz, A.M. Aragay, D. Goldstein and J.H. Brown (1996) Coupling of the thrombin receptor to G12 may account for selective effects of thrombin on gene expression and DNA synthesis in 1321N1 astrocytoma cells. Mol. Biol. Cell 7:1679-1690 Privat, A. and P. Rataboul(1986)Fibrous and protoplasmic astrocytes. In Federoff S, Vernadakis D, eds. Astrocytes:Development, Morphology and Regional Specialization of Astrocytes. New York, Academic Press. 105-129 Raff, M.C., R.H. Miller and M. Noble(1983)A glial progenitor cell that develops in vitro into an astrocyte or an oligodendrocyte depending on culture medium. Nature 303:390-396 Raisman, G. (2004) Myelin inhibitors: does NO mean GO? Nature Rev. Neurosci. 5:157–161 Rakic, P. (1981) Neuronal-glial interaction during brain development. Trends Neurosci. 4:184-187 Raub, T.J., S. Kuentzel and G..A. Sawada(1992)Permeability of bovine brain microvessel endothelial cells in vitro:Barrier tightening by a factor released from astroglioma cells. Exp. Cell Res. 199:330-340 Renfranz, P.J., M.G. Cunningham and McKay, R.D.G. (1991) Region-specific differentiation of the hippocampal stem cell line HiB5 upon implantation into the developing mammalian brain. Cell 66:713-729 Ridet, J.L., S.K. Malhotra, A. Privat and F.H. Gage(1997)Reactive astrocytes:cellular and molecular cues to biological function. Trends Neurosci. 20:570-577 Riek-Burchardt, F., F. Striggow, P. Henrich-Noack, G. Reiser and K.G. Reymann (2002) Increase of prothrombin-mRNA after global ischemia in rats, with constant expression of protease nexin-1 and protease-activated receptors. Neurosci. Lett. 329:181–184 Roessmann, U. and P. Gambetti (1986) Astrocytes in the developing human brain: an immunohistochemical study. Acta Neuropathol. (Berl.) 70:347-356 Rudge, J.S., E.M. Pasnikowski, P. Holst and R.M. Lindsay (1995) Changes in neurotrophic factor expression and receptor activation following exposure of hippocampal neuron astrocyte cocultures to kainic acid. J. Neurosci. 15 : 6856-6867 Salm, A.K., K.G. Smithson and G.I. Hatton (1985) Lactation-associated redistribution of the glial fibrillary acidic protein within the supraoptic nucleus. Cell Tissue Res. 242: 9-15 Schecter, R., S.-H.C. Yen and R.D. Terry (1981) Fibrous astrocytes in senile dementia of the Alzheimer type. J. Neuropathol. Exp. Neurol. 40:95-101 Schiffer, D., T. Giordana, A. Migheli, G. Gioccone, S. Pezzotta and A. Mauro(1986)Glial fibrillary acidic protein and vimentin in the experimental glial reaction of the rat brain. Brain Res. 374:110-118 Schweitzer, S.C., M.W. Klymkowsky, R.M. Bellin Robson, Y. Capetanaki and R.M. Evans(2001)Paranemin and the organization of desmin filament networks. J. Cell Sci. 114:1079-1089 Steinert, P.M., Y.-H. Chou, V. Prahlad, D.A.D. Parry, L.N. MareKov, K.C. Wu, S.-I. Jang and R.D. Goldman(1999)A high molecular weight intermediate filament-associated protein in BHK-21 cell is nestin, a type VI intermediatte filament protein. J. Biol. Chem. 274:9881-9890 Sheng, J., S. Yang, L. Xu, C. Wu, X. Wu, A. Li, Y. Yu, H. Ni, M. Fukuda and J. Zhou (2004)Bystin as a novel marker for reactive astrocytes in the adult rat brain following injury. Euro. J. Neurosci. 20:873-884 Shetty, A.K., V. Zaman and G.A. Shetty (2003) Hippocampal neurotrophin levels in a kainite model of temporal lobe epilepsy: a lack of correlation between brain-derived neurotrophic factor content and progression of aberrant dentate mossy fiber sprouting. J. Neurochem 87:147-159 Shibuya S., O. Miyamoto, T. Itano, S. Mori and H. Norimatsu (2003) Temporal progressive antigen expression in radial glia after contusive spinal cord injury in adlut rats. Glia 42:172-183 Snyder, E.Y., D.L. Deitcher, C. Walsh, S. Arnold-Aldea, E.A. Hartweig and C.L. Cepko (1992) Multipotent neural cell lines can engraft and participate in development of mouse cerebellum. Cell 68:33-51 Striggow, F., M. Riek, P. Henrich-Noack, K.G. Reymann and G. Reiser (2000) The protease thrombin is an endogenous mediator of hippocampal neuroprotection against ischemia a low concentrations but causes degeneration at high concentrations. Proc. Natl. Acad. Sci. U. S. A. 97:264–269 Theodosis, D.T. and D.A. Poulain (1987) Oxytocin-secreting neurons : a physiological model for structural plasticity in the adult mammalian brain. Trends Neurol. Sci. 10:426-430 Turgeon, V.L., N. Salman and L.J. Houneou (2000) Thrombin: a neuronal cell modulator. Thromb. Res. 99:417– 427 Ubl JJ and G. Reiser(1997)Activity of protein kinase C is necessary for sustained thrombin-induced [Ca2+]i oscillations in rat glioma cells. Pflügers Arch 433: 312–320 Ubl JJ and Reiser G. b(1997)Characteristics of thrombin-induced calcium signals in rat astrocytes. Glia 21: 361–369 Vaughan, P.J., C.J. Pike, C.W. Cotman, D.D. Cunningham (1995) Thrombin receptor activation protects neurons and astrocytes from cell death produced by environmental insults. J. Neurosci. 157:5389– 5401 Vergnolle, N.(2000)Proteinase-activated receptors: novel signals for gastrointestinal pathophysiology. Aliment Pharmacol. Ther. 14 : 257–266 Vu, T.-K. H., D.T. Hung, V.I. Wheaton and S.R. Coughlin (1991) Molecular cloning of a functional thrombin receptor reveals a novel proteolytic mechanism of receptor activation. Cell 64:1057–1068 Wang, H., J. U.B.L. Joachim and G. Reiser (2002) Four subtypes of protease-activated receptors, coexpressed in rat astrocytes, evoked different physiological signaling. Glia 37:53-63 Wang, H. and G. Reiser(2003)Thrombin signaling in the brain: the role of protease-activated receptors. J Biol Chem 384: 193–202 Walz, W. (1989) Role of glial cells in the regulation of the brain ion neuroenvironment. Prog. Neurobiol. 33:309-333 Wolff, J.R.(1976)The morphological organization of cortical neuroglia. In Remond A, Creutzfeld O, eds. Handbook of Electroencephalography and Clinical Neurophysiology. Vol 2A. Amsterdam, Elsevier, 26-33 Wu, J.H., M.Y. Yi and Q. Huang(2004)The structual and temporal characteristics of four intermediate filament proteins during retinal development of rat. Zhonghua Yan Ke Za Zhi. 11:765-769 Xi, G.., Y. Hua, R.F. Keep, H..K. Duong and J.T. Hoff (2001) Activation of p44 / 42 mitogen activated protein kinases in thrombin-induced brain tolerance. Brain Res. 895 : 153-159 Xu, W.F., H. Andersen, T.E. Whitmore, S.R. Presnell, D.P. Yee, A. Ching, T. Gilbert, E.W. Davie and D.C. Foster (1998) Cloning and characterization of human protease-activated receptor 4. Proc. Natl. Acad.Sci. USA 95:6642–6646 Yang, H.Y., N. Lieska and R.D. Goldman.(1990)Intermediate filament associated protein. In cellular and molecular biology of intermediate filaments, R.D. Goldman and P.M. Steinert eds. Plenum Press, New York. Pp. 371-391 Yang, H.Y., N. Lieska, D. Shao, V. Kriho and G.D. Pappas(1993)Immunotyping of radial glia and their glial derivatives during development of the rat spinal cord. J. Neurocytol 22:558-571 Yang, H.Y., N. Lieska, V. Kriho, C.M. Wu and G.D. Pappas(1997)A subpopulation of reactive astrocytes at the immediate site of cerebral cortical injury. Exp. Neurol. 146:199-205 Zeitlow, R., S.B. Dunnett and J.W. Fawcett(1999) The effect of microglia on embryonic dopaminergic neuronal survival in vitro:A comparison of conditioned medium, co-culture and three dimentional culture. Eur. J. Nturosci. 11:1657-1667 Zhang, J., M.J. Fry, M.D. Waterfield, S. Jaken, L. Liao, J.E. Fox and S.E. Rittenhouse (1992) Activated phosphoinositide 3-kinase associates with membrane skeleton in thrombin-exposed platelets. J. Biol. Chem. 267:4686-4692 Zurn, A.D., Nick H. and Monard D.(1988)A glia-derived nexin promotes neurite outgrowth in cultured chick sympathetic neurons. Dev. Neurosci. 10:17-24 | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/39007 | - |
| dc.description.abstract | 中樞神經系統受傷時,會引發一連串的細胞性反應,以進行長達數週的修復程序,一般稱之為膠細胞增殖反應,其中星形膠細胞為最主要之反應細胞類別。Nestin是胚胎時期表現之中間絲蛋白質,主要出現於移行及進行細胞分裂中的細胞,包括神經幹細胞、星形膠細胞的祖元細胞,以及未成熟的肌細胞。近來研究顯示,nestin常用以標定不同時期的分化細胞,以及發育階段的細胞。據前人研究,未成熟的星形膠細胞會表現nestin,隨著星形膠細胞的發育,nestin 的表現量會逐漸下降。在成熟的星形膠細胞中並不會表現nestin,然而,它會重新表現在神經受傷後引發的反應型星形膠細胞中。但引起星形膠細胞再表現nestin的確切因子仍無定論。前人研究指出,凝血酶除了凝血作用之外,亦為一種良好的促細胞分裂素,會引起星形膠細胞增生以及形態改變。因此於受傷反應周圍自血液中釋出之凝血酶,很可能為引起nestin之再表現之反應因子。為了證實凝血酶為促使星形膠細胞再表現nestin的反應因子,本實驗係以初級培養的星形膠細胞為模組,以凝血酶及其促效劑(SFLLRN)、 PAR-1拮抗劑(YFLLRNP)分別刺激之。西方點墨法的結果顯示,凝血酶的確能夠促進反應型星形膠細胞再表現nestin,並且有依劑量增加而增加的效果。其中,以0.5 U/ml凝血酶處理的組別nestin的回復量最高。另外,凝血酶促效劑也能夠使反應型星形膠細胞之nestin再表現,西方點墨法的結果指出,不同濃度的促效劑對於nestin再表現的影響亦有依劑量增加而增加的效果,證實凝血酶確實為促使反應型星形膠細胞再表現nestin的反應因子。然而,凝血酶PAR-1拮抗劑並不能抑制凝血酶的作用,換言之,凝血酶對於反應型星形膠細胞nestin再表現的作用並非透過PAR-1,可能為經由PAR-3或PAR-4。除了上述西方點墨法之外,本研究亦以雙重免疫螢光染色觀察GFAP及nestin在反應型星形膠細胞中之表現。觀察發現,在細胞飢餓兩天後,以凝血酶或其促效劑處理的反應型星形膠細胞nestin表現量有回復。然而,以凝血酶及其PAR-1拮抗劑同時處理的組別,nestin的再表現並無受到抑制。總結免疫螢光染色的結果與西方點墨法的結果,證實凝血酶能夠促進星形膠細胞再表現nestin。由於nestin的再表現為反應型星形膠細胞的特徵之一,是故,由實驗結果可進一步推論,在中樞神經受傷時,凝血酶很可能為引起膠細胞增殖反應之重要反應因子,於影響神經細胞修復及再生之作用上扮演重要的角色。 | zh_TW |
| dc.description.abstract | It is well known that traumatic injuries of the CNS induce a gliotic reaction characterized by reactive astrocytes, which are among the most abundant cells in brain and are involved in multiple brain functions. During embryonic development, nestin is present mainly in migrating and mitotic cells, such as neural stem cell, progenitors of astrocytes and immature myocytes. Recently, nestin has been frequently used as a marker of multipotent neuroectodermal precursor cells. It is expressed in a cell-cycle-dependent manner and is down-regulated as neuroepithelial stem cells cease division and differentiate along their respective neural or glial lineages like astrocytes. It has been reported that immature astrocytes exhibit nestin, but not mature astrocytes. However, nestin is re-expressed in reactive asytrocytes induced by CNS injuries. As for the factor stimulating the re-expression of nestin fallowing brain injuries remains unclear. According to the previous studies, thrombin plays essential roles in the coagulation cascade, and also acts as an effective mitogen for primary cultured astrocytes, which leads to cell proliferation and shape alterations. Therefore, we hypothesize that it might be probably thrombin released from blood around injured cells that induces the re-expression of nestin in reactive astrocytes. To examine if thrombin is the potent factor that evokes nestin re-expression, neonatal rat astrocytes in primary cultures were stimulated with thrombin, thrombin agonist(SFLLRN)or PAR-1 antagonist(YFLLRNP). Western blot results showed that nestin re-expression can be induced by thrombin in a dose-dependent manner and that the maximal effect occurs at the concentration of 0.5 U/ml. Moreover, thrombin agonist mimics the effect of thrombin, and nestin re-expression is also elevated with increasing concentrations of agonist. These results suggest that thrombin induces nestin re-expression in reactive astrocytes. However, it is interesting that thrombin antagonist did not attenuate the thrombin response significantly in this assay. In other words, the effect of thrombin on nestin re-expression in reactive astrocytes might not mediated through the activation of PAR-1, which regulates cell proliferation and shape alterations, but rather mediated via PAR-3 and/or PAR-4. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-13T16:57:06Z (GMT). No. of bitstreams: 1 ntu-94-R90225013-1.pdf: 851623 bytes, checksum: 694f6550259ac84590130fd12a390ca2 (MD5) Previous issue date: 2005 | en |
| dc.description.tableofcontents | 目次
頁數 誌謝…………………………………………………………………………………i 中文摘要……………………………………………………………………………ii 英文摘要……………………………………………………………………………iv 目次…………………………………………………………………………………vi 緒論 一、前言……………………………………………………………………….1 二、星形膠細胞……………………………………………………………….2 三、膠細胞增殖反應………………………………………………………….3 四、反應型星形膠細胞……………………………………………………….4 五、中間絲…………………………………………………………………….6 六、Nestin……………………………………………………………………...8 七、凝血酶為促成反應型星形膠細胞的可能因子………………………….10 八、凝血酶…………………………………………………………………….11 九、凝血酶對於細胞的影響………………………………………………….12 十、凝血酶蛋白結構………………………………………………………….13 十一、凝血酶的受體(Protease-activated receptors, PARs)………………..14 十二、星形膠細胞中所表現的PARs…………………………………………15 十三、PAR-1……………………………………………………………………16 十四、PAR-2……………………………………………………………………17 十五、PAR-3……………………………………………………………………19 十六、PAR-4……………………………………………………………………19 十七、凝血酶受體PARs活化的訊息傳導路徑………………………………20 十八、實驗目的…………………………………………………………………23 實驗材料與方法 一、實驗材料……………………………………………………………………24 二、細胞處理所需藥品…………………………………………………………24 三、Intermediate Filament-enriched Preparation 所需藥品…………………….25 四、西方點墨法所需藥品及抗體……………………………………………….25 五、免疫螢光染色所需抗體…………………………………………………….25 實驗方法 一、星形膠細胞初級細胞培養………………………………………………….27 二、細胞處理…………………………………………………………………….27 三、中間絲製備(IF-enriched preparation)……………………………………28 四、西方點墨法………………………………………………………………….28 五、免疫螢光顯微鏡技術……………………………………………………...29 實驗結果 一、初級培養星形膠細胞之形態觀察…………………………………………...30 二、所培養的反應型星形膠細胞所佔比例……………………………………...30 三、Starvation使星形膠細胞nestin表現下降..………………………………….31 四、不同濃度凝血酶對於星形膠細胞nestin再表現的影響:西方點墨法……31 五、不同濃度凝血酶促效劑對於星形膠細胞nestin再表現的影響 :西方點墨法………………………………………………………………..32 六、不同濃度凝血酶 PAR-1 結抗劑對於星形膠細胞nestin再表現的影響 :西方點墨法………………………………………..………………………..32 七、凝血酶處理的星形膠細胞之nestin表現情形:免疫螢光染色…………….33 八、凝血酶促效劑處理的星形膠細胞之nestin表現情形:免疫螢光染色…….34 九、凝血酶結抗劑處理的星形膠細胞之nestin表現情形:免疫螢光染色…….34 討論 一、凝血酶對於反應型星形膠細胞nestin再表現的影響……………………….36 二、凝血酶的非凝血生理作用…………………………………………….……38 三、以凝血酶刺激反應型星形膠細胞再表現nestin的可能原因……………….39 四、反應型星形膠細胞再表現nestin之可能功能……………………………….41 五、以凝血酶刺激反應型星形膠細胞再表現nestin之訊息傳導路徑 與PARs的關係………………………………………………………...……43 參考資料……………………………………………………………………………..47 附圖…………………………………………………………………………………...61 | |
| dc.language.iso | zh-TW | |
| dc.subject | 凝血酶 | zh_TW |
| dc.subject | 反應型星形膠細胞 | zh_TW |
| dc.subject | 中間絲 | zh_TW |
| dc.subject | 星形膠細胞 | zh_TW |
| dc.subject | thrombin | en |
| dc.subject | PARs | en |
| dc.subject | reactive astrocytes | en |
| dc.subject | astrocytes | en |
| dc.subject | GFAP | en |
| dc.subject | nestin | en |
| dc.title | 凝血酶誘導反應型星形膠細胞之中間絲蛋白nestin之再表現 | zh_TW |
| dc.title | Thrombin Induces Nestin Re-expression in Reactive Astrocytes | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 93-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 李心予 教授(Hsin-Yu Lee),黃火鍊 教授(Fore-Lien Huang),黃步敏 教授(Bu-Miin Huang) | |
| dc.subject.keyword | 反應型星形膠細胞,中間絲,星形膠細胞,凝血酶, | zh_TW |
| dc.subject.keyword | nestin,thrombin,GFAP,astrocytes,reactive astrocytes,PARs, | en |
| dc.relation.page | 69 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2005-05-30 | |
| dc.contributor.author-college | 生命科學院 | zh_TW |
| dc.contributor.author-dept | 分子與細胞生物學研究所 | zh_TW |
| 顯示於系所單位: | 分子與細胞生物學研究所 | |
文件中的檔案:
| 檔案 | 大小 | 格式 | |
|---|---|---|---|
| ntu-94-1.pdf 未授權公開取用 | 831.66 kB | Adobe PDF |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
