豚鼠乳头肌在室温下静息后动作电位持续时间和收缩。

E R Migliaro, M Michelini, H N Durán
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引用次数: 0

摘要

同时记录右乳头肌的动作电位和等长张力。在1 Hz的常规刺激后,允许暂停10分钟。在休息后的第一次搏动中,我们测量了90%复极时的动作电位持续时间(APD90)、最大抽搐张力(T)、收缩峰值时间(TTP)和张力(+dT/ dT)和松弛(-dT/ dT)的发展速度。根据休息前的值进行归一化。35℃休息后APD90和TTP延长,T降低,25℃休息后无明显变化。休息后+dT/ dT较慢,dT/ dT无明显变化。硝苯地平10微米阻止休息后APD90延长,并产生进一步降低机械反应。用Li+替代外部Na+缩短APD90,增加正常或休息后心跳的T,导致钙超载征象。当钠离子置换过程暂停时,钙超载迹象减弱。我们认为,休息和室温联合作用主要通过Na+/Ca++机制来降低[Ca++]i。[ca++]i的减少反过来又可以延缓iCa的失活。结果,获得较长的ap,伴随着较弱和较慢的机械反应。TTP和+ dT/ dT的变化可能表明室温下休息后收缩依赖于细胞外Ca++,而不是RS的变化。
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Action potential duration and contraction after rest at room temperature in guinea pig papillary muscle.

Simultaneous recordings of action potential and isometric tension of right papillary muscles were performed. After regular stimulation at 1 Hz, pauses of 10 min were allowed. In the first beat after rest, we measured action potential duration at the 90% of the repolarization (APD90), maximal twitch tension (T), time to peak of contraction (TTP), and rate of development of tension (+dT/dt) and relaxation (-dT/dt). Values were normalized against pre-rest ones. No significative changes were observed after rest at 35 degrees C. After rest at 25 degrees C APD90 and TTP were prolonged but T was reduced. Post-rest +dT/dt were slower, dT/dt did not show significative changes. Nifedipine 10 microM prevented post-rest APD90 lengthening, and produced a further reduction of mechanical response. Substitution of external Na+ by Li+ shortened APD90, increased T of either regular or post-rest beats and led to calcium overload signs. When pause were allowed during Na+ substitution, calcium overload signs were attenuated. We conclude that the combination of rest and room temperature diminished [Ca++]i mainly by Na+/Ca++ mechanism. The reduction of [Ca++]i in turn could delay the inactivation of iCa. As a consequence, longer APs were obtained, accompanied by weaker and slower mechanical responses. Changes in TTP and + dT/dt could suggest that post-rest contractions in room temperature, are dependent of extracellular Ca++ rather than a deplected RS.

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