期刊简介
本刊于2006年2月25日创刊,是中华人民共和国教育部主管、华中科技大学同济医学院主办的国家级医学类期刊,由中科院杨雄里院士、王永炎院士等担任名誉主编,由武汉同济医院神经内科主任王伟教授担任主编。本刊紧跟国际神经科学发展趋势,对神经系统疾病的基础与临床研究的新动态、新技术、新进展和新经验,予以实时追踪、报道,同时对基层医务工作者所关注的临床诊断方法、治疗方法、相关技能予以介绍,突出科学性、创新性和实用性。本刊坚持理论与实践相结合,普及与提高相结合,国内与国外相结合,交流神经病学领域的学术研究成果和实践经验,促进我国神经病学事业的蓬勃发展。欢迎广大神经内外科、内科等科室的临床医师、各大科研机构的研究人员、进修生、研究生、博士生以及医学院校的教师等踊跃投稿、订阅。
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首页>神经损伤与功能重建杂志

- 杂志名称:神经损伤与功能重建杂志
- 主管单位:中华人民共和国教育部
- 主办单位:华中科技大学同济医学院
- 国际刊号:1001-117X
- 国内刊号:42-1759/R
- 出版周期:双月刊
期刊荣誉:1998年获湖北省优秀期刊期刊收录:统计源核心期刊(中国科技论文核心期刊), 国家图书馆馆藏, 知网收录(中), 维普收录(中), 上海图书馆馆藏, 万方收录(中)
关键词:CCL2, CCL5, CXCL1, lipocalin-2, NFκ B, aquaporin-4, granulocyte, innate immunity
摘要:Neuromyelitis optica (NMO) is a primary astrocyte disease associated with central nervous system inflammation, demyelination, and tissue injury. Brain lesions are frequently observed in regions enriched in expression of the aquaporin-4 (AQP4) water channel, an antigenic target of the NMO IgG serologic marker. Based on observations of disease reversibility and careful characterization of NMO lesion development, we propose that the NMO IgG may induce a dynamic immunological response in astrocytes. Using primary rat astrocyte-enriched cultures and treatment with NMO patient-derived serum or purified IgG, we observed a robust pattern of gene expression changes consistent with the induction of a reactive and inflammatory phenotype in astrocytes. The reactive astrocyte factor lipocalin-2 and a broad spectrum of chemokines, cytokines, and stress response factors were induced by either NMO patient serum or purified IgG. Treatment with IgG from healthy controls had no effect. The effect is disease-specific, as serum from patients with relapsing-remitting multiple sclerosis, Sj gren's, or systemic lupus erythematosus did not induce a response in the cultures. We hypothesize that binding of the NMO IgG to AQP4 induces a cellular response that results in transcriptional and translational events within the astrocyte that are consistent with a reactive and inflammatory phenotype. Strategies aimed at reducing the inflammatory response of astrocytes may short circuit an amplification loop associated with NMO lesion development.
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