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室周器官在神经免疫中的作用研究进展 被引量:2

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摘要 室周器官(circumventricular organs,CVOs)是位于第三脑室、第四脑室室壁上,主要由特化的室管膜细胞组成的缺乏血脑屏障结构的微小器官,包括终板血管器(organum vasculosumof the lamina terminalis,OVLT)、穹隆下器(subfornical organ,
作者 杨均 李作孝
出处 《西南军医》 2012年第2期340-342,共3页 Journal of Military Surgeon in Southwest China
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参考文献17

  • 1Benarroch,Eduardo E.Circumventricular organs Receptive and home-ostatic functions and clinical implications[J].Neurology,2011,77(12):1198-1204.
  • 2Cotrell GT,Ferguson AV.Sensory circumventricular organs:centralroles in integrated autonomic regulation[J].Regul Pept,2004,117:11-23.
  • 3Jean-Stephane Jolly,Joana Osorio,Alessandro Alumni,et al.Win-dows of the brain:Towards a developmental biology of circumventricu-lar and other neurohemal organs[J].Seminars in Cell&Developmen-tal Biology.2007,18:512-524.
  • 4Rivest S.Molecular insights on the cerebral innate immune system[J].Brain Behav Immun 2003,17:13-19.
  • 5张朝佑.人体解剖学[M].第3版.北京:人民卫生出版社,2009.418-421.
  • 6Engelhardt B.The blood-central nervous system barriers activelycontrol immune cell entry into the central nervous system[J].CurrPharmaceutical Design,2008,14:1555-1565.
  • 7Chakravarty S,Herkenham M.Toll-like receptor 4 on nonhemato-poietic cells sustains CNS inflammation during endotoxemia,inde-pendent of systemic cytokines[J].Neurosci,2005,25:1788-1796.
  • 8叶建亚.实验性变态反应性脑脊髓炎大鼠穹窿下器凋亡细胞的观察[J].脑与神经疾病杂志,2009,17(5):339-341. 被引量:2
  • 9曹翠丽,刁劲夫,石扬,马常升,杨天祝.大鼠室周器官内小胶质细胞在实验性变态反应性脑脊髓炎不同时期的形态学观察[J].河北医科大学学报,2009,30(7):717-718. 被引量:1
  • 10Swaab DF,Ai-Min B,Lucassen PJ.The stress system in the humanbrain in depression and neurodegeneration[J].Ageing Res Rev2005,4:141-194.

二级参考文献12

  • 1陈慧芳,吕佩源,陈竞清,林嘉友.EAE大鼠中枢神经系统与外周免疫器官细胞凋亡的研究[J].中国神经免疫学和神经病学杂志,2004,11(5):280-282. 被引量:6
  • 2孟荔 欧阳建.凋亡与自身免疫病的研究进展.中外健康文摘(医药学刊),2007,4(9):31-32.
  • 3Petry KG, Boulleren AI, Pousset F, et al. Experimental allergic encephalomyelitis animal models for analyzing features of multiple sclerosis. Pathol Biol ( Paris), 2000, 48 : 48-53.
  • 4Nguyen KB, McCombe PA, Pender MP. Macrophage apoptosis in the central nervous system in experimental autoimmune encephalomyelitis. J Autoimmun, 1994, 7: 145-152.
  • 5Pender MP. Activation-induced apoptosis of autoreactive and alloreactive T lymphocytes in the target organ as a major mechanism of tolerance . Immunol Cell Biol, 1999, 77 : 216-223.
  • 6Suvannavejh GC, Dal Canto MC, Matis LA, et al. Fas-mediated apoptosis in clinical remissions of relapsing experimental autoimmune encephalomyelitis. J Clin Invest, 2000, 105: 223-231.
  • 7Tabi Z, Mcombe PA, Pender MP. Antigen-specific down-regulation of myelin basic protein-reactive T ceils during spontaneous recovery from experimental autoimmune encephalomyelitis: further evidence of apoptotic deletion of autoreactive T ceils in the central nervous system. Int Immunol, 1995, 7 : 967-973.
  • 8Okuda Y, Bernard CC, Fujimura H, et al. Fas has a crucial role in the progression of experimental autoimmune encephalomyelitis. Mol Immunol, 1998, 35 : 317-326.
  • 9Quan N, Stern EL, Whiteside MB, et al. Induction of pro-inflammatory cytokine mRNAs in the brain after peripheral injection of subseptic doses of lipopolysaccharide in the rat. J Neuroimmunol, 1999,93 : 72 -80.
  • 10White CA, McCombe PA, Pender MP. The roles of Fas, Fas ligand and Bcl-2 in T cell apoptosis in the central nervous system in experimentral autoimmune encephalomyelitis. J Neuroimmunol, 1998, 82 : 47-55.

共引文献3

同被引文献45

  • 1马常升,曹翠丽.脑室周围器官解剖学[M].北京:科学出版社,2009.
  • 2Pevny L,Placzek M. SOX genes and neural progenitor i- dentity [J]. Curt Opin Neurobiol, 2005,15 ( 1 ) : 7 - 13.
  • 3Germanh A, Montalbano G, Guerrera MC, et al. Develop-mental changes in the expression of sox2 in the zebrafish brain[J]. Mierose Res Teeh,2919,74(4) :347-354.
  • 4Ellis P, Fagan BM, Magness ST, et al. SOX2, a persistent marker for multipotential neural stem cells derived from embryonic stem cells, the embryo or the adult [J]. Dev Neurosci, 2004,26 ( 2 - 4) : 148 - 165.
  • 5Foret A, Quertainmont R, Botman O, et al. Stem ceils in the adult rat spinal cord:plasticity after injury and tread- mill training exercise[J]. J Neurochem, 2010,112(8) : 762 -772.
  • 6Hendrickson ML,Rao AJ,Demerdash ON, et al. Expres- sion of nestin by neural ceils in the adult rat and human brain[J]. PloS One,2011,6(4) :e18535.
  • 7Ramchandra R, Hood SG,Watson AM,et al. Central an- giotensin type 1 receptor blockade decreases cardiac but not renal sympathetic nerve activity in heart failure[J]. Hypertension, 2012,59 (3) : 634- 641.
  • 8Mortazavi MM , Tubbs RS, Harmon D, et al. Chronic em- esis due to compression of the area postrema by the pos- terior inferior cerebellar artery: resolution following mi- crovascular decompression [ J ]. J Neurosurg Pediatr, 2010,6 (6) : 583 - 585.
  • 9Fauquier T, Rizzoti K, Dattani M, et al. SOX2 - express- ing progenitor cells generate all of the major cell types in the adult mouse pituitary gland[J]. Proc Natl Aead Sci U S A,2008,105(8):2907-2912.
  • 10Kelherman D, Rizzoti K, Avilion A, et al. Mutations within Sox2/SOX2 are associated with abnormalities in the hypothalamopituitary gonadal axis in mice and hu- mans[J]. J Clin Invest,2006,116(9) :2442-2455.

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