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微量热法研究氰化物对鲤鱼肝线粒体代谢的影响
引用本文:李会荣,刘义, ,戴捷,覃彩芹,张忠海,屈松生.微量热法研究氰化物对鲤鱼肝线粒体代谢的影响[J].中国化学,2006,24(5):627-630.
作者姓名:李会荣  刘义     戴捷  覃彩芹  张忠海  屈松生
作者单位:[1]Department of Chemical Biology, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, Hubei 430072, China [2]Department of Chemistry, Xiaogan University, Xiaogan, Hubei 432100, China
基金项目:Project supported by the National Natural Science Foundation of China (Nos. 20373051, 30570015), the Teaching and Research Award Program for 0utstanding Young Professors of High Education Institute, Ministry of Education of China (2001) and the Research Program of Hubei Provincial Department of Education, China (No. 2004X048).
摘    要:A microcalorimetric technique based on the metabolic heat-output was explored to evaluate the inhibition of cyanide on the mitochondrial metabolism of aquatic animal, Cyprinus carpio. The power-time curves could be divided into four parts: lag phase, active recovery phase, stationary phase, and decline phase, and the corresponding thermokinetic parameters were obtained. The maximum heat production rate Pmax decreased in a linear manner with the increase of concentration of cyanide, however, such mitochondria of aquatic animal were still metabolized actively even under the action of high concentration of cyanide. All the observations suggested that the mitochondria of this aquatic animal should exhibit considerable ability of cyanide-resistant respiration.

关 键 词:线粒体  显微热量测定  新陈代谢  氰化钠  水生动物
收稿时间:2005-08-17
修稿时间:2005-08-172005-11-17

Investigation of the Inhibition of Cyanide on Metabolism of Fish Liver Mitochondria by Microcalorimetry
LI Hui-Rong, LIU Yi, DAI Jie, QIN Cai-Qin, ZHANG Zhong-Hai, QU Song-Sheng.Investigation of the Inhibition of Cyanide on Metabolism of Fish Liver Mitochondria by Microcalorimetry[J].Chinese Journal of Chemistry,2006,24(5):627-630.
Authors:LI Hui-Rong  LIU Yi  DAI Jie  QIN Cai-Qin  ZHANG Zhong-Hai  QU Song-Sheng
Abstract:A microcalorimetric technique based on the metabolic heat‐output was explored to evaluate the inhibition of cyanide on the mitochondrial metabolism of aquatic animal, Cyprinus carpio. The power‐time curves could be divided into four parts:lag phase, active recovery phase, stationary phase, and decline phase, and the corresponding thermokinetic parameters were obtained. The maximum heat production rate Pmax decreased in a linear manner with the increase of concentration of cyanide, however, such mitochondria of aquatic animal were still metabolized actively even under the action of high concentration of cyanide. All the observations suggested that the mitochondria of this aquatic animal should exhibit considerable ability of cyanide‐resistant respiration.
Keywords:mitochondria  microcalorimetry  metabolism  sodium cyanide
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