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对肌浆网游离钙的直接测量揭示了生理条件下兰尼碱受体增强的瞬时效应背后的机制。

Direct measurements of SR free Ca reveal the mechanism underlying the transient effects of RyR potentiation under physiological conditions.

作者信息

Greensmith David J, Galli Gina L J, Trafford Andrew W, Eisner David A

机构信息

Unit of Cardiac Physiology, Institute of Cardiovascular Science, Manchester Academic Health Science Centre, 3.18 Core Technology Facility, 46 Grafton Street, Manchester M13 9NT, UK.

Unit of Cardiac Physiology, Institute of Cardiovascular Science, Manchester Academic Health Science Centre, 3.18 Core Technology Facility, 46 Grafton Street, Manchester M13 9NT, UK

出版信息

Cardiovasc Res. 2014 Sep 1;103(4):554-63. doi: 10.1093/cvr/cvu158. Epub 2014 Jun 19.

Abstract

AIMS

Most of the calcium that activates contraction is released from the sarcoplasmic reticulum (SR) through the ryanodine receptor (RyR). It is controversial whether activators of the RyR produce a maintained increase in the amplitude of the systolic Ca transient. We therefore aimed to examine the effects of activation of the RyR in large animals under conditions designed to be as physiological as possible while simultaneously measuring SR and cytoplasmic Ca.

METHODS AND RESULTS

Experiments were performed on ventricular myocytes from canine and ovine hearts. Cytoplasmic Ca was measured with fluo-3 and SR Ca with mag-fura-2. Application of caffeine resulted in a brief increase in the amplitude of the systolic Ca transient accompanied by an increase of action potential duration. These effects disappeared with a rate constant of ∼3 s(-1). Similar effects were seen in cells taken from sheep in which heart failure had been induced by rapid pacing. The decrease of Ca transient amplitude was accompanied by a decrease of SR Ca content. During this phase, the maximum (end-diastolic) SR Ca content fell while the minimum systolic increased.

CONCLUSIONS

This study shows that, under conditions designed to be as physiological as possible, potentiation of RyR opening has no maintained effect on the systolic Ca transient. This result makes it unlikely that potentiation of the RyR has a maintained role in positive inotropy.

摘要

目的

激活收缩的大部分钙是通过兰尼碱受体(RyR)从肌浆网(SR)释放的。RyR激活剂是否能使收缩期钙瞬变幅度持续增加存在争议。因此,我们旨在研究在尽可能接近生理状态的条件下,激活大型动物的RyR同时测量SR和细胞质钙的影响。

方法与结果

对犬和羊心脏的心室肌细胞进行实验。用fluo-3测量细胞质钙,用mag-fura-2测量SR钙。应用咖啡因导致收缩期钙瞬变幅度短暂增加,同时动作电位时程延长。这些效应以约3 s⁻¹的速率常数消失。在快速起搏诱导心力衰竭的绵羊的细胞中也观察到类似效应。钙瞬变幅度的降低伴随着SR钙含量的降低。在此阶段,最大(舒张末期)SR钙含量下降,而最小收缩期含量增加。

结论

本研究表明,在尽可能接近生理状态的条件下,RyR开放增强对收缩期钙瞬变没有持续影响。这一结果使得RyR增强不太可能在正性肌力作用中发挥持续作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ef3/4145011/9e13246a8213/cvu15801.jpg

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