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Species- and Preparation-Dependence of Stretch Effects on Sino-Atrial Node Pacemaking

机译:牵张效应对中国心房节律起搏的物种和制备依赖性

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摘要

Acute dilation of the right atrium (e.g., via increased venous return) raises spontaneous beating rate (BR) of the heart in many species. Neural mechanisms contribute to this behavior in vivo, but a positive chronotropic response to stretch can also be observed in isolated right atrial tissue preparations and even at the level of single sino-atrial node (SAN) cells. The underlying mechanism has previously been reported to be compatible with stretch-activation of cation nonselective ion channels (SAC). This review reports species peculiarities in the chronotropic response of isolated SAN tissue strips to stretch: in contrast to guinea pig, murine SAN preparations respond to distension with a reduction in spontaneous BR. This differential response need not necessarily involve disparate (sub-)cellular mechanisms, as SAC activation would occur against the background of very different SAN electrophysiology in the two species. On the basis of single SAN cell action potential recordings, this review illustrates how this may give rise to potentially opposing effects on spontaneous BR. Interestingly, streptomycin (a useful SAC blocker in isolated cells) has no effect on stretch-induced chronotropy in situ, and this is interpreted as an indication of protection of SAC, in native tissue, from interaction with the drug.
机译:右心房的急性扩张(例如,通过增加静脉回流)会增加许多物种的心脏自发搏动率(BR)。神经机制有助于体内这种行为,但是在分离的右心房组织制剂中甚至在单个窦房结(SAN)细胞水平上,也可以观察到对伸展的正性变时反应。先前已报道了潜在的机制与阳离子非选择性离子通道(SAC)的拉伸激活兼容。这篇综述报告了孤立的SAN组织条带在变时反应中物种的特殊性:与豚鼠不同,鼠SAN制剂对扩张反应自发性BR降低。这种差异反应不一定需要涉及不同的(亚)细胞机制,因为SAC激活将在两个物种的SAN电生理差异非常大的背景下发生。根据单个SAN细胞动作电位记录,本次综述说明了这可能对自发性BR产生潜在的相反影响。有趣的是,链霉素(在分离的细胞中有用的SAC阻滞剂)对拉伸诱导的原发性变时反应没有影响,这被解释为在天然组织中防止SAC与药物相互作用的指示。

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