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Dissociation of force decline from calcium decline by preload in isolated rabbit myocardium

机译:通过预紧力分离离体兔心肌中的力下降与钙下降的分离

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It is well known that the rate of intracellular calcium ([Ca2+]i) decline is an important factor governing relaxation in unloaded myocardium. However, it remains unclear to what extent, under near physiological conditions, the intracellular calcium transient amplitude and kinetics contribute to the length-dependent increase in force and increase in duration of relaxation. We hypothesize that myofilament properties rather than calcium transient decline primarily determines the duration of relaxation in adult mammalian myocardium. To test this hypothesis, we simultaneously measured force of contraction and calibrated [Ca2+]i transients in isolated, thin rabbit trabeculae at various lengths at 37°C. Time from peak tension to 50% relaxation (RT50(tension)) increases significantly with length (from 49.8 ± 3.4 to 83.8 ± 7.4 ms at an [Ca2+]o of 2.5 mM), whereas time from peak calcium to 50% decline (RT50(calcium)) was not prolonged (from 124.8 ± 5.3 to 107.7 ± 11.4 ms at an [Ca2+]o of 2.5 mM). Analysis of variance revealed that RT50(tension) is significantly correlated with length (P < 0.0001). At optimal length, varying the extracellular calcium concentration increased both developed force and calcium transient amplitude, but RT50(tension) remained unchanged (P = 0.90), whereas intracellular calcium decline actually accelerated (P < 0.05). Thus, an increase in muscle length will result in an increase in both force and duration of relaxation, whereas the latter is not primarily governed by the rate of [Ca2+]i decline.
机译:众所周知,细胞内钙([Ca 2 + ] i )的下降速率是控制无负荷心肌松弛的重要因素。然而,尚不清楚在接近生理条件下,细胞内钙瞬变幅度和动力学在多大程度上有助于力的长度依赖性增加和松弛持续时间的增加。我们假设肌纤维特性而不是钙瞬变下降主要决定了成年哺乳动物心肌松弛的持续时间。为了验证该假设,我们同时测量了收缩力,并在37°C下以不同长度对分离的稀薄兔小梁中的[Ca 2 + ] i 瞬态进行了校准。在[Ca 2 + ]下,从峰值张力到50%松弛时间(RT 50(张力))的时间显着增加(从49.8±3.4到83.8±7.4 ms) o 为2.5 mM),而从峰值钙到下降50%(RT 50(钙))的时间没有延长(从124.8±5.3到107.7±11.4 ms, (Ca 2 + ] o 为2.5 mM)。方差分析表明,RT 50(张力)与长度显着相关(P <0.0001)。在最佳长度下,改变细胞外钙浓度既增加了发育力,又增加了钙瞬变幅度,但RT 50(张力)保持不变(P = 0.90),而细胞内钙下降实际上加速了(P <0.05) 。因此,增加肌肉长度将导致放松力和持续时间的增加,而放松时间主要不受[Ca 2 + ] i 下降。

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