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轻度肾性高血压改变跑步训练对大鼠心肌细胞力学频率响应的影响。

Mild renal hypertension alters run training effects on the frequency response of rat cardiomyocyte mechanics.

作者信息

Palmer Bradley M, Mokelke Eric A, Thayer Anne M, Moore Russell L

机构信息

Department of Kinesiology and Applied Physiology, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

J Appl Physiol (1985). 2003 Nov;95(5):1799-807. doi: 10.1152/japplphysiol.00978.2002. Epub 2003 Jul 11.

Abstract

We examined the effects of run training on the frequency dependence of cardiomyocyte mechanics and intracellular calcium concentration ([Ca2+]i) dynamics in rats with mild renal hypertension. Male Fischer 344 rats aged 2-3 mo underwent a sham operation or stenosis of the left renal artery, which increased systolic blood pressure 20-30 mmHg. Half of the rats in each group underwent treadmill run training for >16 wk. Isolated cardiomyocytes were paced at 1.0 and 0.2 Hz in 2 mM external Ca2+ concentration at 29 degrees C. Under these conditions, negative frequency responses, i.e., decreased value with increased frequency, were recorded for peak shortening, shortening velocity, and the integral of the [Ca2+]i transient in both groups. Run training amplified the negative frequency response for the integral of the [Ca2+]i transient in both groups, but it amplified the negative frequency response for the shortening dynamics only in the normotensive sham-operated and not in the hypertensive rats. These results, as well as others for relaxation parameters, suggest that renal hypertension altered the effects of run training on the frequency response for cardiomyocyte contractile apparatus and/or passive mechanical properties, which respond to [Ca2+]i.

摘要

我们研究了跑步训练对轻度肾性高血压大鼠心肌细胞力学频率依赖性和细胞内钙浓度([Ca2+]i)动力学的影响。2至3月龄的雄性Fischer 344大鼠接受假手术或左肾动脉狭窄手术,术后收缩压升高20 - 30 mmHg。每组中有一半的大鼠接受了超过16周的跑步机跑步训练。在29℃、外部钙浓度为2 mM的条件下,以1.0 Hz和0.2 Hz的频率对分离的心肌细胞进行起搏。在这些条件下,两组的峰值缩短、缩短速度和[Ca2+]i瞬变积分均记录到负频率响应,即随着频率增加而值降低。跑步训练增强了两组[Ca2+]i瞬变积分的负频率响应,但仅在血压正常的假手术大鼠中增强了缩短动力学的负频率响应,而在高血压大鼠中未增强。这些结果以及关于舒张参数的其他结果表明,肾性高血压改变了跑步训练对心肌细胞收缩装置和/或被动力学特性频率响应的影响,这些特性对[Ca2+]i有反应。

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