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人类气道平滑肌在结构和力学上与其他物种相似。

Human airway smooth muscle is structurally and mechanically similar to that of other species.

机构信息

iCAPTURE Centre, St. Paul's Hospital, 166-1081 Burrard Street, Vancouver, BC, V6Z 1Y6, Canada.

出版信息

Eur Respir J. 2010 Jul;36(1):170-7. doi: 10.1183/09031936.00136709. Epub 2009 Nov 19.

Abstract

Airway smooth muscle (ASM) plays a vital role in the exaggerated airway narrowing seen in asthma. However, whether asthmatic ASM is mechanically different from nonasthmatic ASM is unclear. Much of our current understanding about ASM mechanics comes from measurements made in other species. Limited data on human ASM mechanics prevents proper comparisons between healthy and asthmatic tissues, as well as human and animal tissues. In the current study, we sought to define the mechanical properties of healthy human ASM using tissue from intact lungs and compare these properties to measurements in other species. The mechanical properties measured included: maximal stress generation, force-length properties, the ability of the muscle to undergo length adaptation, the ability of the muscle to recover from an oscillatory strain, shortening velocity and maximal shortening. The ultrastructure of the cells was also examined. Healthy human ASM was found to be mechanically and ultrastructurally similar to that of other species. It is capable of undergoing length adaptation and responds to mechanical perturbation like ASM from other species. Force generation, shortening capacity and velocity were all similar to other mammalian ASM. These results suggest that human ASM shares similar contractile mechanisms with other animal species and provides an important dataset for comparisons with animal models of disease and asthmatic ASM.

摘要

气道平滑肌(ASM)在哮喘中气道狭窄的过度扩张中起着至关重要的作用。然而,哮喘患者的 ASM 在机械方面是否与非哮喘患者的 ASM 不同尚不清楚。我们目前对 ASM 力学的大部分理解来自于其他物种的测量。关于人类 ASM 力学的有限数据妨碍了健康组织和哮喘组织以及人类和动物组织之间的适当比较。在本研究中,我们试图使用完整肺组织定义健康人 ASM 的力学特性,并将这些特性与其他物种的测量结果进行比较。所测量的力学特性包括:最大应力产生、力-长度特性、肌肉适应长度的能力、肌肉从振荡应变中恢复的能力、缩短速度和最大缩短。还检查了细胞的超微结构。发现健康人的 ASM 在机械和超微结构上与其他物种相似。它能够适应长度并对机械扰动做出反应,就像其他物种的 ASM 一样。力的产生、缩短能力和速度都与其他哺乳动物的 ASM 相似。这些结果表明,人类 ASM 与其他动物物种具有相似的收缩机制,并为与疾病动物模型和哮喘 ASM 的比较提供了重要的数据集。

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