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机械负荷及长度变化对单个豚鼠心室肌细胞的影响。

The effects of mechanical loading and changes of length on single guinea-pig ventricular myocytes.

作者信息

White E, Boyett M R, Orchard C H

机构信息

Department of Physiology, University of Leeds, UK.

出版信息

J Physiol. 1995 Jan 1;482 ( Pt 1)(Pt 1):93-107. doi: 10.1113/jphysiol.1995.sp020502.

DOI:10.1113/jphysiol.1995.sp020502
PMID:7730993
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1157756/
Abstract
  1. The effects of mechanical loading and changes of length on the contraction of single guinea-pig ventricular myocytes has been investigated. 2. Cell shortening was monitored during isotonic contractions (in which the cell shortened freely) and after attaching carbon fibres of known compliance to the ends of the cell, so that the cell contracted auxotonically (the cell both shortened and developed force). 3. Mechanically loading the cells decreased the amount of shortening during a contraction and abbreviated the contraction. There were, however, no consistent changes in the action potential or the [Ca2+]i transient (measured with the fluorescent dye fura-2). 4. Increasing stimulation rate increased the size of the contraction and the [Ca2+]i transient in both isotonic and auxotonic conditions. The increase in the size of the contraction induced by an increase in stimulation rate was greater in auxotonic conditions but the increase in the size of the [Ca2+]i transient was not. 5. When cells were stretched, there was a step increase in the size of the contraction and a prolongation of its time course. However, neither the size nor the time course of the accompanying [Ca2+]i transient was significantly altered by this intervention. 6. When a stretch was maintained, a further, slow increase in the size of the contraction occurred during the following 3-11 min, in about half the cells studied. The probability of this slow response occurring was increased if the initial degree of activation of the cell was decreased. 7. These data suggest that the mechanisms underlying the responses to mechanical loading and changes of length are the same in both multicellular and single cell preparations of cardiac muscle.
摘要
  1. 研究了机械负荷和长度变化对单个豚鼠心室肌细胞收缩的影响。2. 在等张收缩期间(细胞自由缩短)以及将已知顺应性的碳纤维连接到细胞两端后监测细胞缩短情况,此时细胞进行辅助性收缩(细胞既缩短又产生力)。3. 对细胞施加机械负荷会减少收缩期间的缩短量并缩短收缩时间。然而,动作电位或[Ca2+]i瞬变(用荧光染料fura-2测量)没有一致的变化。4. 在等张和辅助性收缩条件下,增加刺激频率都会增加收缩大小和[Ca2+]i瞬变。在辅助性收缩条件下,刺激频率增加引起的收缩大小增加更大,但[Ca2+]i瞬变大小的增加并非如此。5. 当细胞被拉伸时,收缩大小会有一个阶跃增加,并且其时间进程会延长。然而,这种干预并未显著改变伴随的[Ca2+]i瞬变的大小和时间进程。6. 当维持拉伸时,在接下来的3 - 11分钟内,约一半被研究的细胞的收缩大小会进一步缓慢增加。如果细胞的初始激活程度降低,这种缓慢反应发生的概率会增加。7. 这些数据表明,在心肌的多细胞和单细胞制剂中,对机械负荷和长度变化的反应机制是相同的。

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2
Contraction and relaxation of isolated cardiac myocytes of the frog under varying mechanical loads.不同机械负荷下青蛙离体心肌细胞的收缩与舒张
Circ Res. 1993 Feb;72(2):297-311. doi: 10.1161/01.res.72.2.297.
3
Measurements of sarcomere dynamics simultaneously with auxotonic force in isolated cardiac cells.
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