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中药复方防治脑梗死机制研究进展
引用本文:季梦漂,李鑫,周德生,李杰,吴涛,李琳,胡志希.中药复方防治脑梗死机制研究进展[J].湖南中医药大学学报,2016(10):96-99.
作者姓名:季梦漂  李鑫  周德生  李杰  吴涛  李琳  胡志希
作者单位:1. 湖南中医药大学,湖南 长沙,410208;2. 湖南中医药大学第一附属医院,湖南 长沙,410007
基金项目:国家自然科学基金资助项目(81373550,81202647)。
摘    要:脑梗死是临床常见性、多发性脑血管病,现代医学多以超早期溶栓、神经细胞保护、介入和外科手术等治疗为主,虽然近期疗效显著,但无法避免的副作用及严格的治疗准入条件使其临床应用大受限制。中医学整体审察、辨证论治的诊疗观以及复方多靶点、多环节、多途径、网络整合调节的治疗特点,在脑梗死防治方面有着不可或缺的优势。基于此,本文拟从抗氧自由基损伤、抑制凋亡基因激活、促进血管内皮生长及神经再生等方面系统综述中药复方治疗脑梗死的作用原理,以期为中医药防治缺血性脑血管疾病提供部分科学循证依据。

关 键 词:脑梗死  中药复方  抗氧化损伤  抑制兴奋氨基酸与钙超载  凋亡细胞  血管内皮生长  神经再生功能

Research Progress of the Mechanism of Chinese Herbal Compound in Treatment of Cerebral Infarction
Abstract:Cerebral infarction is a common clinical and multiple ischemic cerebrovascular disease, which treatment methods of modern medicine are mainly including early thrombolytic therapy, nerve cell protection therapy, interventional therapy, surgical therapy and so on. Eventhough recent therapeutic efficacy of theses methods is significant, their clinical application is limited due to the unavoided side effects and strict treatment access conditions. Chinese medicine has an indispensable advantage in treatment of cerebral infarction for the concept of wholism of diagnosis and syndrome differentiation. Chinese herbal formulation has multi-targets, multi-link, multi-way and network overall adjustment advantage. In this article, we will systematically review the principle of action of Chinese herbal formulation in treatment with cerebral infarction from anti-oxidative damage, inhibition of ecitability amino acid and overload of calcium, inhibition of apoptotic cell activation and promotion of vessel endothelial growth factor nerve regeneration. That is to provide the scientific evidence for prevention and treatment of ischemic cerebrovascular disease by Chinese medicine.
Keywords:cerebral infarction  Chinese herbal compound  mechanism of action  anti-oxidative damage  inhibition of ecitability amino acid and overload of calcium  inhibition of apoptotic cell activation  promote vessel endothelial growth factor  nerve regeneration
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