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大黄改善急性脑出血大鼠血脑屏障损伤的水通道蛋白-4机理研究 被引量:74
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作者 唐宇平 蔡定芳 +1 位作者 刘军 陈依萍 《中国中西医结合杂志》 CAS CSCD 北大核心 2006年第2期152-156,共5页
目的探讨大黄改善急性脑出血血脑屏障损伤的水通道蛋白4(aquaporin4,AQP4)机理。方法采用立体定向注射自体无肝素动脉血制作大鼠脑出血模型,对神经功能缺损、脑含水量进行观察,伊文思蓝染色观察血脑屏障紧密连接(bloodbrainbarriertight... 目的探讨大黄改善急性脑出血血脑屏障损伤的水通道蛋白4(aquaporin4,AQP4)机理。方法采用立体定向注射自体无肝素动脉血制作大鼠脑出血模型,对神经功能缺损、脑含水量进行观察,伊文思蓝染色观察血脑屏障紧密连接(bloodbrainbarriertightjunction,BBBTJ)的损害,电镜观察不同时间点BBB和神经星形胶质细胞足突改变,用RTPCR和Westernblot检测AQP4mRNA和蛋白表达。结果脑出血后,与模型组比较,大黄可明显减轻脑水肿;伊文思蓝染色结果显示血脑屏障从12h开始明显损害;电镜结果提示出血后12h血脑屏障紧密连接被破坏,而且神经星形胶质细胞足突肿胀;大黄可有效使血脑屏障紧密连接的破坏减少、神经星形胶质细胞足突肿胀减轻。脑出血模型组大鼠AQP4表达出现增高(P<0.05);脑出血后1天AQP4mRNA和AQP4蛋白表达增强,第3天达峰值,其后逐渐有所下降。大黄可抑制AQP4基因转录和翻译。结论大黄可通过改善血脑屏障损伤减轻脑水肿;大黄改善血脑屏障破坏的作用可能是通过抑制AQP4基因转录和翻译实现的。 展开更多
关键词 脑出血 水通道蛋白-4 血脑屏障 脑水肿
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GDNF的表达调控与Parkinson病的神经保护治疗
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作者 赵卿 高俊鹏 蔡定芳 《神经解剖学杂志》 CAS CSCD 北大核心 2009年第6期677-681,共5页
关键词 神经保护作用 GDNF 替代治疗 表达调控 多巴胺能神经元 胶质细胞源性 神经退行性疾病 神经生长因子
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Triptolide protects against 1-methyl-4-phenyl pyridinium-induced dopaminergic neurotoxicity in rats:Implication for immunosuppressive therapy in Parkinson’s disease 被引量:5
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作者 高俊鹏 孙珊 +2 位作者 李文伟 陈依萍 蔡定芳 《Neuroscience Bulletin》 SCIE CAS CSCD 2008年第3期133-142,共10页
Objective Neuroinflammation with microglial activation has been implicated to have a strong association with the progressive dopaminergic neuronal loss in Parkinson's disease (PD). The present study was undertaken ... Objective Neuroinflammation with microglial activation has been implicated to have a strong association with the progressive dopaminergic neuronal loss in Parkinson's disease (PD). The present study was undertaken to evaluate the activation profile of microglia in 1-methyl-4-phenyl pyridinium (MPP^+)-induced hemiparkinsonian rats. Triptolide, a potent immunosuppressant and microglia inhibitor, was then examined for its efficacy in protecting dopaminergic neurons from injury and ameliorating behavioral disabilities induced by MPP^+. Methods The rat model of PD was established by intranigral microinjection of MPP^+. At baseline and on day 1, 3, 7, 14, 21 following MPP^+ injection, the degree of microglial activation was examined by detecting the immunodensity of OX-42 (microglia marker) in the substantia nigra (SN). The number of viable dopaminergic neurons was determined by measuring tyrosine hydroxylase (TH) positive neurons in the SN. Behavioral performances were evaluated by counting the number of rotations induced by apomorphine, calculating scores of forelimb akinesia and vibrissae-elicited forelimb placing asymmetry. Results Intranigral injection of MPP^+ resulted in robust activa- tion of microglia, progressive depletion of dopaminergic neurons, and ongoing aggravation of behavioral disabilities in rats. Triptolide significantly inhibited microglial activation, partially prevented dopaminergic cells from death and improved behavioral performances. Conclusion These data demonstrated for the first time a neuroprotective effect of triptolide on dopaminergic neurons in MPP^+ induced hemiparkinsonian rats. The protective effect of triptolide may, at least partially, be related to the inhibition of MPP^+-induced microglial activation. Our results lend strong support to the use of immunosuppressive agents in the management of PD. 展开更多
关键词 Parkinson's disease TRIPTOLIDE MICROGLIA neurons
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