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百草枯对肺细胞组分呼吸作用的影响。

The effect of paraquat on the respiration of lung cell fractions.

作者信息

Rossouw D J, Engelbrecht F M

出版信息

S Afr Med J. 1978 Dec 23;54(26):1101-4.

PMID:746468
Abstract

The in vitro effects of paraquat on the aerobic metabolism of lung and liver homogenates, as well as on the oxygen consumption of isolated rat and rabbit lung mitochondria, were investigated. It was found that the endogenous oxygen uptake of a 40% lung homogenate was similar to that of a 10% liver homogenate, and that succinate (20 mM) was well oxidized by both homogenates. About 14% of the basal respiration rate was due to cyanide-insensitive oxidative systems in lung and liver homogenates. Paraquat (1 mM and higher concentrations) induced an acute and highly significant increase in the cyanide-insensitive oxygen utilization. We were able to recover about 5% of the protein in the supernatant (1,000 g) of the original homogenate as mitochondrial protein. Only results obtained from mitochondrial preparations with a respiratory control ratio between 2,7 and 3,3 were used in the final analyses, and the normal state 3 respiration values of rabbit and rat lung mitochondria were 45,2 +/- 5,3 and 38,7 +/- 2,9 nmol oxygen per mg protein per minute respectively. Paraquat in concentrations up to 0.5 mM had no significant effect, but higher concentrations up to 1 mM induced a highly significant inhibition of mitochondrial oxygen consumption. When slices were pre-incubated with 1 mM and with 0,01 mM paraquat in the incubation medium, the oxygen consumption of the mitochondria isolated after 2 hours and 4 hours respectively, was significantly reduced.

摘要

研究了百草枯对肺和肝匀浆有氧代谢以及对分离的大鼠和兔肺线粒体耗氧量的体外作用。发现40%肺匀浆的内源性氧摄取与10%肝匀浆的相似,并且两种匀浆均能很好地氧化琥珀酸盐(20 mM)。肺和肝匀浆中约14%的基础呼吸速率归因于对氰化物不敏感的氧化系统。百草枯(1 mM及更高浓度)导致对氰化物不敏感的氧利用急剧且高度显著增加。我们能够从原始匀浆的上清液(1000 g)中回收约5%的蛋白质作为线粒体蛋白。最终分析仅使用呼吸控制率在2.7至3.3之间的线粒体制备物的结果,兔和大鼠肺线粒体的正常状态3呼吸值分别为每分钟每毫克蛋白质45.2±5.3和38.7±2.9 nmol氧。浓度高达0.5 mM的百草枯没有显著影响,但高达1 mM的更高浓度会导致线粒体氧消耗受到高度显著抑制。当切片在孵育培养基中分别用1 mM和0.01 mM百草枯预孵育时,分别在2小时和4小时后分离的线粒体的氧消耗显著降低。

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