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A common mechanism for concurrent changes of diastolic muscle length and systolic function in intact hearts

机译:完好的心脏同时舒张肌长度和收缩功能改变的常见机制

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摘要

Mechanical properties of the myocardium at end diastole have been thought to be dominated by passive material properties rather than by active sarcomere cross-bridge interactions. This study tested the hypothesis that residual cross-bridges significantly contribute to end-diastolic mechanics in vivo and that changes in end-diastolic cross-bridge interaction parallel concurrent changes in systolic cross-bridge interaction. Open-chest anesthetized pigs were treated with intracoronary verapamil (n = 7) or 2,3-butanedione monoxime (BDM; n = 8). Regional left ventricular external work and end-diastolic pressure (EDP) versus end-diastolic segment length (EDL) relations were determined in the treated and untreated regions of each heart. Both agents reduced external work of treated regions to 31–38% of baseline and concurrently shifted EDP versus EDL relations to the right (i.e., greater EDL at a given EDP) by an average of 5% (P < 0.05). During washout of the drugs, EDP versus EDL returned to baseline in parallel with recovery of external work. Sarcomere length, measured by transmission electron microscopy in BDM-treated and untreated regions of the same hearts after diastolic arrest and perfusion fixation, was 8% greater in BDM-treated regions (P < 0.01). We concluded that residual diastolic cross-bridges significantly and reversibly influence end-diastolic mechanics in vivo. Alterations of end-diastolic and systolic cross-bridge interactions occur in parallel.
机译:据认为,舒张末期心肌的机械特性主要由被动材料特性决定,而不是由主动肌小节跨桥相互作用决定。这项研究检验了以下假设:残留的跨桥在体内显着促进了舒张末期力学,并且舒张末期跨桥相互作用的变化与收缩期跨桥相互作用的同时发生变化平行。开胸麻醉的猪用冠状动脉内维拉帕米(n = 7)或2,3-丁二酮一肟(BDM; n = 8)治疗。在每个心脏的治疗区和未治疗区确定左室局部外部功和舒张末期压力(EDP)与舒张末期段长度(EDL)的关系。两种药物均使治疗区域的外部工作减少至基线的31–38%,同时使EDP与EDL关系向右移动(即,给定EDP处的EDL更大)平均5%(P <0.05)。在冲洗药物过程中,EDP与EDL的关系恢复了基线,同时恢复了外部工作。舒张期停搏和灌注固定后,通过透射电镜在同一心脏的BDM治疗和未治疗区域测量的肌节长度在BDM治疗区域增加了8%(P <0.01)。我们得出的结论是,残余的舒张期跨桥显着且可逆地影响体内舒张末期力学。舒张末期和收缩期跨桥相互作用的改变并行发生。

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