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钡诱导兔心肌挛缩的代谢和功能后果。

Metabolic and functional consequences of barium-induced contracture in rabbit myocardium.

作者信息

Shibata T, Berman M R, Hunter W C, Jacobus W E

机构信息

Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Am J Physiol. 1990 Nov;259(5 Pt 2):H1566-74. doi: 10.1152/ajpheart.1990.259.5.H1566.

DOI:10.1152/ajpheart.1990.259.5.H1566
PMID:2240254
Abstract

Barium contracture tonically activates myocardium while preserving cellular integrity. We studied the metabolic and mechanical consequences of sustained Ba2+ contracture. We measured the time course of phosphocreatine (PCr), ATP, Pi, total phosphate, and intracellular pH via 31P nuclear magnetic resonance (NMR) in isolated, isovolumic rabbit hearts. For mechanical studies, we measured force transients and dynamic stiffness in excised rabbit right ventricular papillary muscles at different elapsed times in Ba2+ contracture. In the perfused hearts, PCr fell steadily to 20% of control after 60 min. ATP remained constant for approximately 25 min then fell to 25% by 60 min. Pi rose to 200% within 15 min and then remained unchanged, whereas total phosphate dropped steadily to 50% of control by 60 min. Myocardial O2 consumption remained near control for 30 min and then declined to 50% by 60 min. Consistent with ATP and O2 consumption measurements, mechanical responses were unchanged for approximately the first half hour. Because of the elevated Pi, however, myofilament kinetics may have been accelerated compared with the control metabolic state. After the initial period of stable contracture, the gradual alteration of mechanical behavior exhibited a progressive trend toward more rigor-like characteristics. In summary, myocardium in Ba2+ contracture is metabolically and mechanically stable for approximately 30 min but begins to degrade thereafter. When compared with other tonic states of activation, Ba2+ contracture appears to be less demanding energetically.

摘要

钡离子挛缩可使心肌强直性激活,同时保持细胞完整性。我们研究了持续钡离子挛缩的代谢和机械后果。我们通过31P核磁共振(NMR)测量了离体等容兔心脏中磷酸肌酸(PCr)、三磷酸腺苷(ATP)、无机磷酸(Pi)、总磷酸盐和细胞内pH的时间进程。在力学研究中,我们测量了在钡离子挛缩不同时间点切除的兔右心室乳头肌的力瞬变和动态僵硬度。在灌注心脏中,60分钟后PCr稳步下降至对照值的20%。ATP在约25分钟内保持恒定,然后在60分钟时降至25%。Pi在15分钟内升至200%,然后保持不变,而总磷酸盐在60分钟时稳步降至对照值的50%。心肌耗氧量在30分钟内接近对照水平,然后在60分钟时降至50%。与ATP和耗氧量测量结果一致,力学反应在前半小时左右没有变化。然而,由于Pi升高,与对照代谢状态相比,肌丝动力学可能加速。在最初的稳定挛缩期之后,力学行为的逐渐改变呈现出向更类似强直状态的特征发展的趋势。总之,处于钡离子挛缩状态的心肌在代谢和力学上约30分钟内是稳定的,但此后开始降解。与其他强直性激活状态相比,钡离子挛缩似乎能量需求较低。

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