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Chronic effects of mechanical force on airways.

机译:机械力对气道的慢性影响。

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Airways are embedded in the mechanically dynamic environment of the lung. In utero, this mechanical environment is defined largely by fluid secretion into the developing airway lumen. Clinical, whole lung, and cellular studies demonstrate pivotal roles for mechanical distention in airway morphogenesis and cellular behavior during lung development. In the adult lung, the mechanical environment is defined by a dynamic balance of surface, tissue, and muscle forces. Diseases of the airways modulate both the mechanical stresses to which the airways are exposed as well as the structure and mechanical behavior of the airways. For instance, in asthma, activation of airway smooth muscle abruptly changes the airway size and stress state within the airway wall; asthma also results in profound remodeling of the airway wall. Data now demonstrate that airway epithelial cells, smooth muscle cells, and fibroblasts respond to their mechanical environment. A prominent role has been identified for the epithelium in transducing mechanical stresses, and in both the fetal and mature airways, epithelial cells interact with mesenchymal cells to coordinate remodeling of tissue architecture in response to the mechanical environment.
机译:气道嵌入肺部的机械动态环境中。在子宫内,这种机械环境主要是由分泌到发展中的气道腔中的液体所决定的。临床,全肺和细胞研究证明了机械发育在肺发育过程中在气道形态发生和细胞行为中的关键作用。在成年肺中,机械环境由表面,组织和肌肉力的动态平衡来定义。气道疾病既调节气道所承受的机械应力,也调节气道的结构和机械性能。例如,在哮喘中,气道平滑肌的激活会突然改变气道的大小和气道壁内的压力状态。哮喘还导致气道壁的彻底重塑。现在的数据表明,气道上皮细胞,平滑肌细胞和成纤维细胞对其机械环境作出反应。已经确定了上皮在转导机械应力中的重要作用,并且在胎儿和成熟气道中,上皮细胞与间充质细胞相互作用以响应于机械环境协调组织结构的重塑。

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