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两种近交系大鼠气管平滑肌的力学与横桥动力学

Mechanics and crossbridge kinetics of tracheal smooth muscle in two inbred rat strains.

作者信息

Blanc F X, Coirault C, Salmeron S, Chemla D, Lecarpentier Y

机构信息

INSERM LOA ENSTA, Polytechnic School, Palaiseau, France.

出版信息

Eur Respir J. 2003 Aug;22(2):227-34. doi: 10.1183/09031936.03.00064203.

Abstract

The aim of the study was to determine whether the nonspecific in vivo airway hyperresponsiveness of the inbred Fisher F-344 rat strain was associated with differences in the intrinsic contractile properties of tracheal smooth muscle (TSM) when compared with Lewis rats. Isotonic and isometric contractile properties of isolated TSM from Fisher and Lewis rats (each n=10) were investigated, and myosin crossbridge (CB) number, force and kinetics in both strains were calculated using Huxley's equations adapted to nonsarcomeric muscles. Maximum unloaded shortening velocity and maximum extent of muscle shortening were higher in Fisher than in Lewis rats (approximately 46% and approximately 42%, respectively), whereas peak isometric tension was similar. The curvature of the hyperbolic force/velocity relationship did not differ between strains. Myosin CB number and unitary force were similar in both strains. The duration of CB detachment and attachment was shorter in Fisher than in Lewis rats (approximately -46% and -34%, respectively). In Fisher rats, these results show that inherited, genetically determined factors of airway hyperresponsiveness are associated with changes in crossbridge kinetics, contributing to an increased tracheal smooth muscle shortening capacity and velocity.

摘要

本研究的目的是确定与Lewis大鼠相比,近交系Fisher F-344大鼠品系的非特异性体内气道高反应性是否与气管平滑肌(TSM)的内在收缩特性差异有关。研究了从Fisher大鼠和Lewis大鼠(每组n = 10)分离的TSM的等张和等长收缩特性,并使用适用于非肌节肌肉的赫胥黎方程计算了两个品系中肌球蛋白横桥(CB)的数量、力和动力学。Fisher大鼠的最大无负荷缩短速度和肌肉最大缩短程度高于Lewis大鼠(分别约为46%和约42%),而等长收缩峰值张力相似。两个品系之间双曲线力/速度关系的曲率没有差异。两个品系中肌球蛋白CB数量和单位力相似。Fisher大鼠中CB脱离和附着的持续时间比Lewis大鼠短(分别约为-46%和-34%)。在Fisher大鼠中,这些结果表明,气道高反应性的遗传决定因素与横桥动力学的变化有关,导致气管平滑肌缩短能力和速度增加。

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