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首页> 外文期刊>The Journal of general physiology >Cross-bridge elasticity in single smooth muscle cells.
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Cross-bridge elasticity in single smooth muscle cells.

机译:单个平滑肌细胞中的跨桥弹性。

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In smooth muscle, a cross-bridge mechanism is believed to be responsible for active force generation and fiber shortening. In the present studies, the viscoelastic and kinetic properties of the cross-bridge were probed by eliciting tension transients in response to small, rapid, step length changes (delta L = 0.3-1.0% Lcell in 2 ms). Tension transients were obtained in a single smooth muscle cell isolated from the toad (Bufo marinus) stomach muscularis, which was tied between a force transducer and a displacement device. To record the transients, which were of extremely small magnitude (0.1 microN), a high-frequency (400 Hz), ultrasensitive force transducer (18 mV/microN) was designed and built. The transients obtained during maximal force generation (Fmax = 2.26 microN) were characterized by a linear elastic response (Emax = 1.26 X 10(4) mN/mm2) coincident with the length step, which was followed by a biphasic tension recovery made up of two exponentials (tau fast = 5-20 ms, tau slow = 50-300 ms). During the development of force upon activation, transients were elicited. The relationship between stiffness and force was linear, which suggests that the transients originate within the cross-bridge and reflect the cross-bridge's viscoelastic and kinetic properties. The observed fiber elasticity suggests that the smooth muscle cross-bridge is considerably more compliant than in fast striated muscle. A thermodynamic model is presented that allows for an analysis of the factors contributing to the increased compliance of the smooth muscle cross-bridge.
机译:在平滑肌中,跨桥机制被认为是主动力产生和纤维缩短的原因。在本研究中,通过响应小的,快速的步长变化(在2毫秒内L = 0.3-1.0%Lcell)引起张力瞬变来探测过桥的粘弹性和动力学特性。在从蟾蜍(蟾蜍海马)胃肌分离出的单个平滑肌细胞中获得了张力瞬变,该平滑肌细胞被束缚在力传感器和位移装置之间。为了记录瞬态信号,瞬态信号的幅度很小(0.1 microN),设计并制造了一个高频(400 Hz)超灵敏力传感器(18 mV / microN)。在最大力产生过程中获得的瞬态(Fmax = 2.26 microN)的特征在于线性弹性响应(Emax = 1.26 X 10(4)mN / mm2),与长度步长一致,然后进行双相张力恢复,由两个指数(tau快= 5-20毫秒,tau慢= 50-300毫秒)。在激活时力的发展过程中,会引起瞬变。刚度和力之间的关系是线性的,这表明瞬态起源于横桥内并反映了横桥的粘弹性和动力学特性。观察到的纤维弹性表明,与快速横纹肌相比,平滑肌横桥的柔韧性要高得多。提供了一个热力学模型,可以分析导致平滑肌横桥顺应性增加的因素。

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