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Age and hypertrophy related changes in contractile post-rest behavior and action potential properties in isolated rat myocytes

机译:与年龄和肥大有关的离体大鼠心肌收缩后行为和动作电位特性的变化

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摘要

“Physiological” aging as well as early and progressive cardiac hypertrophy may affect action potential (AP) pattern, contractile function, and Ca2+ handling. We hypothesize that contractile function is disturbed in hypertrophy from early stages and is differently affected in aged myocardium. In vivo function, cardiomyocyte contractile behavior and APs were compared in Wistar-Kyoto (WIS) rats and spontaneously hypertensive rats (SHR) at different ages and degrees of hypertrophy (3–4, 9–11, 20–24 months). Post-rest (PR) behavior was used to investigate the relative contribution of the sarcoplasmic reticulum (SR) and the Na/Ca exchanger (NCX) to cytosolic Ca2+ removal. APs were recorded by whole-cell current-clamp and sarcomere shortening by video microscopy. Cyclopiazonic acid was used to suppress Ca2+ ATPase (SERCA) function. Heart weight/body weight ratio was increased in SHR versus WIS within all age groups. Myocyte steady state (SS) shortening amplitude was reduced in young SHR versus WIS. Aging led to a significant decay of SS contractile amplitude and relengthening velocity in WIS, but the PR potentiation was maintained. In contrast, aging in SHR led to a decrease of PR potentiation, while SS contraction and relengthening velocity increased. APD50% was always prolonged in SHR versus WIS. With aging, APD50% increased in both WIS and SHR, but was still shorter in WIS. However, in old WIS the late AP portion (APD90%) was prolonged. Ca2+ handling and AP properties are disturbed progressively with aging and with increasing hypertrophy. Decreased amplitude of shortening and velocity of relengthening in aged WIS may be attributed to reduced SERCA function. In SHR, an increase in SR leak and shift towards transmembraneous Ca handling via NCX may be responsible for the changes in contractile function. A prolonged APD90% in aged WIS may be an adaptive mechanism to preserve basal contractility. Therefore, the effects on contractile parameters and AP are different in hypertrophy and aging.
机译:“生理”衰老以及早期和进行性心脏肥大可能影响动作电位(AP)模式,收缩功能和Ca2 + 处理。我们假设收缩功能在早期肥大中受到干扰,并且在老年心肌中受到不同的影响。比较了Wistar-Kyoto(WIS)大鼠和自发性高血压大鼠(SHR)在不同年龄和肥厚程度(3-4、9-11、20-24个月)时的体内功能,心肌收缩行为和AP。通过静息后(PR)行为研究肌浆网(SR)和Na / Ca交换子(NCX)对胞质Ca2 + 去除的相对贡献。通过全细胞电流钳和肌电镜缩短通过视频显微镜记录AP。环苯磺酸用于抑制Ca2 + ATPase(SERCA)的功能。在所有年龄组中,SHR与WIS的心脏重量/体重比均升高。年轻的SHR与WIS相比,心肌细胞稳态(SS)缩短幅度降低。衰老导致WIS中SS的收缩幅度和重新加长速度显着衰减,但PR增强得以维持。相反,SHR的衰老导致PR增强作用降低,而SS收缩和延长速度增加。 SHR与WIS相比,APD50%总是延长。随着年龄的增长,WIS和SHR的APD50%均增加,但WIS仍然较短。但是,在旧的WIS中,晚期AP部分(APD90%)延长了。随着衰老和肥大的增加,Ca2 + 的处理和AP特性逐渐受到干扰。老化的WIS中缩短幅度和重新延长速度的降低可能归因于SERCA功能的降低。在SHR中,SR泄漏的增加和通过NCX向跨膜Ca处理的转移可能是收缩功能改变的原因。老年WIS中APD90%延长可能是维持基础收缩力的一种适应性机制。因此,在肥大和衰老中,对收缩参数和AP的影响是不同的。

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