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心肌肽素对缺氧-再给氧损伤心肌
引用本文:万华印,孔祥平,杨联萍,李茹冰,张宜俊. 心肌肽素对缺氧-再给氧损伤心肌[J]. 中国病理生理杂志, 2001, 17(6): 481-484
作者姓名:万华印  孔祥平  杨联萍  李茹冰  张宜俊
作者单位:中国人民解放军第四五八医院传染病中心分子生物学科,广东广州510602
基金项目:“九五”国家重点科技攻关项目(No.96-902-01-04)
摘    要:目的:研究多肽类物质心肌肽素对缺氧-再给氧损伤心肌细胞的保护作用。方法:复制培养心肌细胞缺氧-再给氧损伤模型,缺氧60min,再给氧30min,观察心肌肽素对细胞超微结构的影响。以ACAS570进行细胞内游离Ca2+的定性检测;以荧光染料Fura-2-AM定量测定细胞内游离Ca2+浓度;以荧光偏振法测定细胞膜脂质流动性。结果:心肌肽素能使心肌细胞线粒体超微结构的损伤减轻;可剂量依赖性地降低[Ca2+]i和提高细胞膜脂质流动性;可明显减少Ca2+伪彩色三维图色彩值。结论:心肌肽素对缺氧-再给氧损伤心肌细胞有明显保护作用,可能与其降低[Ca2+]sub>i和提高细胞膜脂质流动性有关。

关 键 词:肽类  心肌  低氧  超微结构    膜流动性  
文章编号:1000-4718(2001)06-0481-04
收稿时间:2000-02-14

Protective effect ofcardiomyopeptidin on cultured myocardial cells injured by anoxia-reoxygenation
WAN Hua-yin,KONG Xiang-ping,YANG Lian-ping,LI Ru-bing,ZHANG Yi-jun. Protective effect ofcardiomyopeptidin on cultured myocardial cells injured by anoxia-reoxygenation[J]. Chinese Journal of Pathophysiology, 2001, 17(6): 481-484
Authors:WAN Hua-yin  KONG Xiang-ping  YANG Lian-ping  LI Ru-bing  ZHANG Yi-jun
Affiliation:Department of Molecular Biology, Infectious Disease Center, the 458th Hospital of PLA, Guangzhou 510602, China
Abstract:AIM: To study the protective effect of cardiomyopeptidin (CMP) attributed to polypeptide on cultured myocardial cells injured by anoxia-reoxygenation.METHODS: The anoxia-reoxygenation injury model were developed, anoxia for 60 min and reoxygenation for 30 min. The effect of CMP on myocardial ultrastructure was observed. [Ca 2 ] i was estimated with adherent cell analysis and sorting 570(ACAS 570) laser cytometer and measured with fluorescent dye Fura-2-AM, the lipid fluidity of cellular membrane was determined by fluorescence polarization technique. RESULTS: CMP could obviously improve the ultrastructure of myocardial cells and dose-dependently decrease [Ca 2 ] i and increase the lipid fluidity of cellular membrane, CMP also could markedly reduce the chromaticity value of pseudo-colour graphic model of Ca 2 . CONCLUSION: Cardiomyopeptidin has an obvious protective effect on cultured myocardial cells injured by anoxia-reoxygenation, this may be related to its effect of decreasing [Ca 2 ] i and increasing lipid fluidity of cellular membrane. [
Keywords:Peptides  Myocardium  Anoxia  Ultrastructure  Calcium  Membrane fluidity
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