首页> 外文期刊>The Journal of general physiology >Single adult rabbit and rat cardiac myocytes retain the Ca2+- and species-dependent systolic and diastolic contractile properties of intact muscle.
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Single adult rabbit and rat cardiac myocytes retain the Ca2+- and species-dependent systolic and diastolic contractile properties of intact muscle.

机译:单个成年兔和大鼠心肌细胞保留完整肌肉的Ca2 +和物种依赖性的收缩和舒张收缩特性。

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The systolic and diastolic properties of single myocytes and intact papillary muscles isolated from hearts of adult rats and rabbits were examined at 37 degrees C over a range of stimulation frequencies and bathing [Ca2+]o (Cao). In both rabbit myocytes and intact muscles bathed in 1 mM Cao, increasing the frequency of stimulation from 6 to 120 min-1 resulted in a positive staircase of twitch performance. During stimulation at 2 min-1, twitch performance also increased with increases in Cao up to 20 mM. In the absence of stimulation, both rabbit myocytes and muscles were completely quiescent in less than 15 mM Cao. Further increases in Cao caused the appearance of spontaneous asynchronous contractile waves in myocytes and in intact muscles caused scattered light intensity fluctuations (SLIF), which were previously demonstrated to be caused by Ca2+-dependent spontaneous contractile waves. In contrast to rabbit preparations, intact rat papillary muscles exhibited SLIF in 1.0 mM Cao. Two populations of rat myocytes were observed in 1 mM Cao: approximately 85% of unstimulated cells exhibited low-frequency (3-4 min-1) spontaneous contractile waves, whereas 15%, during a 1-min observation period, were quiescent. In a given Cao, the contractile wave frequency in myocytes and SLIF in intact muscles were constant for long periods of time. In both intact rat muscles and myocytes with spontaneous waves, in 1 mM Cao, increasing the frequency of stimulation from 6 to 120 min-1 resulted, on the average, in a 65% reduction in steady state twitch amplitude. Of the rat myocytes that did not manifest waves, some had a positive, some had a flat, and some had a negative staircase; the average steady state twitch amplitude of these cells during stimulation at 120 min-1 was 30% greater than that at 6 min-1. In contrast to rabbit preparations, twitch performance during stimulation at 2 min-1 saturated at 1.5 mM Cao in both intact rat muscles and in the myocytes with spontaneous waves. We conclude that the widely divergent, Ca2+-dependent systolic and diastolic properties of intact rat and rabbit cardiac muscle are retained with a high degree of fidelity in the majority of viable single myocytes isolated from the myocardium of these species, and that these myocytes are thus a valid model for studies of Ca2+-dependent excitation-contraction mechanisms in the heart.
机译:从成年大鼠和兔子的心脏中分离出的单个心肌细胞和完整的乳头状肌的收缩和舒张特性在37摄氏度,一系列刺激频率和沐浴[Ca2 +] o(Cao)下进行了检查。在1 mM Cao中沐浴的兔心肌细胞和完整肌肉中,刺激频率从6 min增加到120 min-1都会导致抽搐表现的阶梯上升。在2 min-1的刺激期间,抽搐表现也随着Cao的增加而增加,直至20 mM。在没有刺激的情况下,少于15 mM Cao时,兔子的心肌细胞和肌肉都完全静止。 Cao的进一步增加会导致肌细胞中出现自发的异步收缩波,而完整的肌肉中会引起散射光强度波动(SLIF),这先前已证明是由依赖Ca2 +的自发性收缩波引起的。与兔制剂相反,完整的大鼠乳头肌在1.0 mM Cao中表现出SLIF。在1 mM Cao中观察到了两个种群的大鼠心肌细胞:大约85%的未刺激细胞表现出低频(3-4 min-1)自发性收缩波,而在1分钟的观察期内有15%的细胞处于静止状态。在给定的Cao中,完整时间里完整细胞中的肌细胞和SLIF的收缩波频率是恒定的。在完整的大鼠肌肉和具有自发波的肌细胞中,在1 mM Cao中,将刺激频率从6 min增加到120 min-1,平均可使稳态抽搐振幅降低65%。在不表现出波动的大鼠心肌细胞中,一些呈阳性,一些呈扁平状,而另一些则呈负阶梯。这些细胞在120 min-1刺激时的平均稳态抽搐幅度比6 min-1时高30%。与兔制剂相反,完整大鼠肌肉和自发波在肌细胞中均以1.5 mM Cao饱和2 min-1刺激时的抽搐表现。我们得出的结论是,完整分离的大鼠和兔心肌的广泛不同的,依赖于Ca2 +的收缩和舒张特性在从这些物种的心肌分离出的大多数可行单个心肌细胞中得以高度保真地保留,因此这些心肌细胞是一个用于研究心脏中Ca2 +依赖性兴奋收缩机制的有效模型。

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