[MECHANISMS OF THE EFFECT OF Li+ ON MYOCARDIUM OF VERTEBRATES].

I V Shemarova, S M Korotkov, V P Nesterov
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Abstract

The effect of Li+ on the frog Rana temporaria myocardium and its influence on the ion transport in the rat heart mitochondria (RHM) were studied. Li+ added to the normal Ringer solution (Li(+)-R) was found to attenuate myocardial tension, decrease the maximal rate of tension development and its half-relaxation time. Comparison of the cardiac muscle contraction parameters in the Li(+)-R with the effect of the voltage-gated Ca(2+)-channels (Cav1.2), verapamil and CdCl2, showed that the negative inotropic effect of the Na+ replacement by Li+ in the limited intermembrane ("fuzzy") space is underlain by the blocking of Ca2+ influx into the myoplasm via the reverse Ca2+/Na(+)-exchanger in the plasma membrane (PM). This, in turn, prevents Ca(2+)-induced massive Ca2+ release into the myoplasm via the RYR2-channels in the sarcoplasmic reticulum (SR) leading in aggregate to suppression of Ca(2+)-dependent myocardial contractions. In the experimental studies of the Li+ effect on the RHM it was established that Li+ just slightly increases the passive permeability of the inner mitochondrial membrane (IMM) for K+ and H+ and decreases the intensity of ion pumping out of the energized mitochondrial matrix to the external medium. This may also indicate the lack of relationship between the mitochondrial oxidative processes and the reduction in the myocardial contractile activity under the Na+ replacement by Li+.

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[Li+对脊椎动物心肌影响的机制]。
研究了Li+对田蛙心肌的影响及其对大鼠心脏线粒体离子转运的影响。正常林格氏液(Li(+)-R)中加入Li+可减弱心肌张力,降低最大张力发展速率和半松弛时间。比较Li(+)-R心肌收缩参数与电压门控Ca(2+)-通道(Cav1.2)、维拉帕米和CdCl2的影响,表明Li+在有限的膜间(“模糊”)空间内取代Na+的负性肌力效应是通过质膜(PM)中反向Ca2+/Na(+)-交换器阻断Ca2+流入肌浆的基础。这反过来又阻止Ca(2+)诱导的大量Ca2+通过肌浆网(SR)中的ryr2通道释放到肌浆中,从而抑制Ca(2+)依赖性心肌收缩。在Li+对RHM效应的实验研究中,我们发现Li+只是略微增加了线粒体内膜对K+和H+的被动通透性(IMM),并降低了离子从通电的线粒体基质向外介质泵出的强度。这也可能表明在Na+被Li+取代的情况下,线粒体氧化过程与心肌收缩活性降低之间缺乏关系。
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