心脏线粒体ATP合成酶调节:卡托普利治疗后高血压缺陷恢复。

Cardioscience Pub Date : 1992-12-01
A M Das, D A Harris
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引用次数: 0

摘要

研究了正常血压(Wistar-Kyoto)和自发性高血压大鼠培养心肌细胞对线粒体ATP合酶能力的控制。自发性高血压大鼠的细胞比正常高血压大鼠的细胞具有更高的基础ATP合酶能力,但缺乏对能量需求增加的正常上调。用卡托普利(60 mg/kg /天,连续12周)治疗自发性高血压大鼠后,高血压大鼠的细胞肥大特征被消除,心肌细胞显示正常的ATP合酶能力。该酶的正常上调也得以恢复。所有细胞对氰化物反应均表现出正常的合成酶下调。用钙拮抗剂维拉帕米和钌红进行的实验表明,在未治疗的自发性高血压大鼠中观察到的异常ATP合酶调节是由于慢性高负荷下心肌细胞Ca2+处理的改变,而卡托普利治疗可以逆转这一变化。
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Mitochondrial ATP synthase regulation in heart: defects in hypertension are restored after treatment with captopril.

Control of mitochondrial ATP synthase capacity was investigated in cultured cardiomyocytes from normotensive (Wistar-Kyoto) and spontaneously hypertensive rats. Cells from spontaneously hypertensive rats have a higher basal ATP synthase capacity than those from normotensives, but lack the normal up-regulation in response to an increased energy demand. After treatment of spontaneously hypertensive rats with captopril (60 mg/kg per day for 12 weeks), cellular hypertrophy characteristic of the hypertensives was abolished and the cardiomyocytes showed a normal ATP synthase capacity. Normal up-regulation of this enzyme was also restored. All cells showed a normal down-regulation of the synthase in response to cyanide. Experiments with the calcium antagonists, verapamil and ruthenium red, suggest that abnormal ATP synthase regulation observed in the untreated spontaneously hypertensive rats results from an alteration of Ca2+ handling in cardiac cells under chronic high workload, which is reversed by captopril treatment.

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