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长度依赖性调节力和钙离子瞬变对大鼠右心房和心室心肌小梁的影响的差异。

Differences in Effects of Length-Dependent Regulation of Force and Ca Transient in the Myocardial Trabeculae of the Rat Right Atrium and Ventricle.

机构信息

Institute of Immunology and Physiology, Ural Branch of Russian Academy of Sciences, 106 Pervomayskaya Str., 620049 Yekaterinburg, Russia.

出版信息

Int J Mol Sci. 2023 May 18;24(10):8960. doi: 10.3390/ijms24108960.

Abstract

The comparative differences in the fundamental mechanisms of contractility regulation and calcium handling of atrial and ventricular myocardium remain poorly studied. An isometric force-length protocol was performed for the entire range of preloads in isolated rat right atrial (RA) and ventricular (RV) trabeculae with simultaneous measurements of force (Frank-Starling mechanism) and Ca transients (CaT). Differences were found between length-dependent effects in RA and RV muscles: (a) the RA muscles were stiffer, faster, and presented with weaker active force than the RV muscles throughout the preload range; (b) the active/passive force-length relationships were almost linear for the RA and RV muscles; (c) the value of the relative length-dependent growth of passive/active mechanical tension did not differ between the RA and RV muscles; (d) the time-to-peak and amplitude of CaT did not differ between the RA and RV muscles; (e) the CaT decay phase was essentially monotonic and almost independent of preload in the RA muscles, but not in the RV muscles. Higher peak tension, prolonged isometric twitch, and CaT in the RV muscle may be the result of higher Ca buffering by myofilaments. The molecular mechanisms that constitute the Frank-Starling mechanism are common in the rat RA and RV myocardium.

摘要

心房和心室心肌收缩调节和钙处理的基本机制的比较差异仍研究甚少。在分离的大鼠右心房(RA)和心室(RV)小梁中进行了整个预加载范围的等长力-长度方案,并同时测量力(Frank-Starling 机制)和 Ca 瞬变(CaT)。在 RA 和 RV 肌肉之间发现了长度依赖性效应的差异:(a)RA 肌肉在整个预加载范围内比 RV 肌肉更硬、更快,并且表现出较弱的主动力;(b)RA 和 RV 肌肉的主动/被动力-长度关系几乎呈线性;(c)被动/主动机械张力的相对长度依赖性增长值在 RA 和 RV 肌肉之间没有差异;(d)RA 和 RV 肌肉之间的 CaT 达峰时间和幅度没有差异;(e)RA 肌肉的 CaT 衰减相基本上是单调的,几乎与预加载无关,但 RV 肌肉则不然。RV 肌肉中的峰值张力更高、等长收缩延长和 CaT 可能是肌丝更高的 Ca 缓冲的结果。构成 Frank-Starling 机制的分子机制在大鼠 RA 和 RV 心肌中是共同的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/833b/10219166/b39007323bb1/ijms-24-08960-g001.jpg

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