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中药合剂对缺氧性脑损害的抗氧化保护作用
http://www.100md.com 《时珍国医国药》 2007年第2期
缺氧;,中药合剂;,抗氧化;,谷胱甘肽过氧化物酶;,过氧化氢酶,,缺氧;,中药合剂;,抗氧化;,谷胱甘肽过氧化物酶;,过氧化氢酶,1材料和方法,2结果,3讨论,参考文献:
     摘要:目的观察中药合剂对缺氧大鼠脑组织的抗氧化保护作用。方法中药合剂的主要成分为丹参、当归、党参、黄芪,生药含量0.4 g/ml。以低压舱减压模拟缺氧,分别观察低氧、常氧条件下中药合剂对SD大鼠脑组织谷胱甘肽含量(GSH)、谷胱甘肽过氧化物酶(GSHPX)和过氧化氢酶(CAT)活性的影响,并检测不同浓度中药合剂在体外的抗羟自由基效力。结果①低氧暴露动物脑组织GSH含量下降,GSHPX和CAT活性降低(P<0.01)。使用中药合剂后,GSH与GSHPX显著提高。②常氧状态下,中药合剂就可提高GSH含量与GSHPX活性。③体外实验显示中药合剂能直接清除H2O2/Co2+体系中产生的羟自由基。结论 在该实验条件下,中药合剂对大鼠缺氧脑组织有一定的抗氧化神经保护作用。药物的这种作用与其提高机体自身的抗氧化能力以及其直接的清除自由基作用有关。

    关键词:缺氧; 中药合剂; 抗氧化; 谷胱甘肽过氧化物酶; 过氧化氢酶

    Anti-oxidative Protective Effect of Chinese Herbal Mixture on Hypoxic Rat Brain

    XIAO Feng, JIANG ZhengLin*, LI Xia, CHEN Jian, PAN YongJin, GU Yong-Jian, SHI Zhong-yuan

    (Nantong University, Jiangsu Province 226001, China; Huaian Hospital Attached to Nanjing Medical University, Huaian 223000, China; Institute of Sea Engineering Sciences, Shanghai Jiaotong University, Shanghai 200231, China)

    Abstract:ObjectiveTo observe the effect of Chinese herbal mixture against hypoxic brain in rats. MethodsHypoxic state was established in hypobaric chamber. We investigated the effects of Chinese herbal mixture on content of GSH, activities of GSH-PX and CAT of rat brain in both hypoxic and normoxic states. In another experiment, the hydroxyl radical scavenging activity of above mixture was measured in vitro using alizarin violet spectrophotometry.ResultsContent of GSH and activities of GSHPX and CAT all decreased significantly in hypoxic group, but GSH and GSHPX decreased less with pretreatment of Chinese herbal mixture. In normoxic state, GSH and GSH-PX were elevated with Chinese herbal mixture. In addition, Chinese herbal mixture scavenged hydroxyl radical in in vitro H2O2/Co2+ experimental system in a dosedependent manner. ConclusionThe results suggest the mechanisms are related to the Chinese herbal mixture of this study plays an antioxidative neuroprotective role on rat brain exposed to hypoxia, and that elevation of the activity of anti-oxidative enzyme GSHPX and the content of GSH, and a direct free radical-scavenging effect. ......

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