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Diastolic scattered light fluctuation resting force and twitch force in mammalian cardiac muscle

机译:哺乳动物心肌舒张散射光起伏静息力和抽搐力

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摘要

1. When coherent light was passed through isolated isometric cardiac muscles during the diastolic or resting period, intensity fluctuations were observed in the scattered field. The frequency of these intensity fluctuations (f½) varied with many experimental interventions known to enhance Ca2+ flux into the cell.2. In rat muscles stimulated at low frequencies (0.1 ± 2.0 min-1) stepwise increases (0.4-10 mm) of [Ca2+] in the bathing fluid ([Ca2+]e), or addition of ouabain (10-6-6 × 10-4 m) to the perfusate caused stepwise increases in f½. These were paralleled by increments in resting force (RF) such that the changes in f½ and RF were highly correlated. Substitution of K+ for Na+ in the perfusate resulted in parallel transients in RF and f½.3. In contrast to the rat, most cat muscles stimulated at low frequencies in the steady state exhibited neither diastolic intensity fluctuations nor Ca2+-dependent changes in RF in [Ca2+]e of 10 mm or less; when [Ca2+]e was increased to 12-32 mm, however, steady-state Ca2+-dependent f½ and RF were observed. In a given [Ca2+]e reduction of [Na+]e increased f½. In the transient state following cessation of regular stimulation at more rapid rates (12-96 min-1) intensity fluctuations were present in all [Ca2+]e and decayed with time (seconds to minutes); the f½ and time course of the decay of the fluctuations were determined by the rate of prior stimulation and [Ca2+]e.4. Maximum potentiation of twitch force in response to the above inotropic interventions was associated with an optimal level of f½ which was similar in both species; when higher levels of f½ were produced by more intense inotropic intervention, twitch force declined. Over the range of inotropic intervention up to and including that at which maximum twitch potentiation occurred, the increase in diastolic f½ predicted the extent of twitch potentiation with a high degree of accuracy (r > 0.97) both in the transient and steady states.5. In contrast to the other inotropic interventions studied, catecholamines were unique in that neither f½ nor RF increased over a full range of concentrations that resulted in maximum potentiation of the twitch.6. It is concluded from these observations that f½ reflects diastolic Ca2+-dependent myofilament interaction; the increase in the extent of this interaction by inotropic interventions that do not alter the affinity of the myofilaments for Ca2+ probably reflects an increase in diastolic myoplasmic [Ca2+], an optimal level of which is associated with maximal potentiation of twitch force; the difference in f½ in rat and cat muscles under a given set of in vitro conditions may be related to the marked species difference in the effectiveness of excitation—contraction coupling.
机译:1.在舒张期或休息期,当相干光穿过孤立的等轴测心肌时,在散射场中观察到强度波动。这些强度波动的频率(f1 / 2)随许多已知增加Ca 2 + 进入细胞的实验干预而变化。2。在低频(0.1±2.0 min -1 )刺激的大鼠肌肉中,沐浴液中的[Ca 2 + ]逐步增加(0.4-10 mm) 2 + ] e)或在灌注液中加入哇巴因(10 -6 -6×10 -4 m)会导致逐步增加f½。这些与静止力(RF)的增加平行,因此f1 / 2和RF的变化高度相关。灌注液中的K + 替代Na + 导致RF和f1 / 2.3中的并行瞬变。与大鼠相反,大多数在稳态下以低频刺激的猫肌肉在[Ca 2 + ]中均未显示舒张强度波动或Ca 2 + 依赖性的RF变化。 e小于等于10毫米;当[Ca 2 + ] e增加到12-32 mm时,观察到稳态的Ca 2 + 依赖性f1 / 2和RF。在给定的[Ca 2 + ] e中,[Na + ] e的减少会增加f½。在以更快的速度(12-96 min -1 )停止常规刺激后的瞬态状态下,所有[Ca 2 + ] e均存在强度波动,并随着时间(秒到分钟);波动衰减的f½和时程由先验刺激率和[Ca 2 + ] e.4确定。响应上述正性肌力干预而产生的最大抽搐力增强与f1 / 2的最佳水平相关,这在两个物种中都相似。当通过更强的正性肌力干预产生更高水平的f½时,抽搐力下降。在正性肌力干预的范围内(包括最大抽搐发生的时间),舒张期f 1/2 的增加预示了抽搐强化的程度(r> 0.97)在两种情况下均较高。瞬态和稳态5。与研究的其他正性肌力干预相反,儿茶酚胺的独特之处在于,在整个浓度范围内,f 1/2 和RF均未增加,从而最大程度地增强了抽搐。6。从这些观察结果可以得出结论,f ½反映了舒张期Ca 2 + 依赖性的肌丝相互作用。通过不改变肌丝对Ca 2 + 的亲和力的正性干预,这种相互作用程度的增加可能反映了舒张性肌质[Ca 2 + ]的增加,其最佳水平与最大的拉力增强有关;在给定的一组体外条件下,大鼠和猫的肌肉中f 1/2 的差异可能与激发-收缩耦合有效性的显着物种差异有关。

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