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发育中大鼠心肌收缩幅度和肌浆网钙含量的静息依赖性

Rest-dependence of twitch amplitude and sarcoplasmic reticulum calcium content in the developing rat myocardium.

作者信息

Ferraz S A, Bassani J W, Bassani R A

机构信息

Centro de Engenharia Biomédica and Departmento de Engenharia Biomédica/Faculdade de Engenharia Elétrica e de Computação, Universidade Estadual de Campinas, 13083-970 Campinas, SP, Brazil.

出版信息

J Mol Cell Cardiol. 2001 Apr;33(4):711-22. doi: 10.1006/jmcc.2001.1337.

Abstract

Post-rest contractile response was studied in isolated ventricular muscle from rats aged 1 to 90 days. Amplitude of rapid cooling contractures (RCC) was taken as an index of the sarcoplasmic reticulum (SR) Ca2+ content. We observed that: (a) developed tension (per cross-section area) increased with age; (b) time to peak twitch force and relaxation half-time decreased from 87+/-6 to 56+/-2 ms and from 68+/-6 to 36+/-1 ms, respectively, from the neonatal period to adulthood; (c) post-rest twitch potentiation was observed at all ages, with greater relative potentiation in younger preparations, although relative potentiation of [Ca2+]i transient amplitude was similar in young and adult isolated ventricular myocytes; (d) rest did not significantly affect the amplitude of RCC in muscle or caffeine-evoked [Ca2+]i transients in myocytes at any studied age; (e) favoring Ca2+ efflux via Na+-Ca2+ exchange (NCX) during rest reversed twitch potentiation and caused a similar decrease in RCC amplitude ( approximately 40%) at all ages; (f) stimulation of Ca2+ influx via NCX during rest increased RCC amplitude ( approximately 40%) only in immature preparations. However, when this procedure was repeated after partial SR Ca2+ depletion, increase in RCC amplitude was not significantly age-dependent. We conclude that post-rest twitch potentiation is already present early after birth and does not require rest-dependent changes in SR Ca2+ content at any studied age. Our results suggest that NCX is close to equilibrium during rest in both adult and developing rat myocardium, and does not seem to mediate diastolic net Ca2+ fluxes which may affect the SR Ca2+ content.

摘要

研究了1至90日龄大鼠离体心室肌的静息后收缩反应。快速冷却挛缩(RCC)的幅度被用作肌浆网(SR)Ca2+含量的指标。我们观察到:(a)(每横截面积的)舒张张力随年龄增加;(b)从新生儿期到成年期,达到峰值抽搐力的时间和舒张半衰期分别从87±6毫秒降至56±2毫秒和从68±6毫秒降至36±1毫秒;(c)在所有年龄都观察到静息后抽搐增强,在较年轻的标本中相对增强更大,尽管在年轻和成年离体心室肌细胞中[Ca2+]i瞬变幅度的相对增强相似;(d)在任何研究年龄,静息对肌肉中RCC的幅度或肌细胞中咖啡因诱发的[Ca2+]i瞬变均无显著影响;(e)在静息期间促进通过钠钙交换(NCX)的Ca2+外流可逆转抽搐增强,并在所有年龄导致RCC幅度类似地降低(约40%);(f)在静息期间刺激通过NCX的Ca2+内流仅在未成熟标本中增加RCC幅度(约40%)。然而,当在部分SR Ca2+耗竭后重复此操作时,RCC幅度的增加并不明显依赖年龄。我们得出结论,静息后抽搐增强在出生后早期就已存在,并且在任何研究年龄都不需要SR Ca2+含量依赖于静息的变化。我们的结果表明,在成年和发育中的大鼠心肌中,静息期间NCX接近平衡,并且似乎不介导可能影响SR Ca2+含量的舒张期净Ca2+通量。

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