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Multiscale mechanics of mucociliary clearance in the lung

机译:肺部粘液杂质间隙的多尺度力学

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摘要

Mucociliary clearance (MCC) is one of the most important defence mechanisms of the human respiratory system. Its failure is implicated in many chronic and debilitating airway diseases. However, due to the complexity of lung organization, we currently lack full understanding on the relationship between these regional differences in anatomy and biology and MCC functioning. For example, it is unknown whether the regional variability of airway geometry, cell biology and ciliary mechanics play a functional role in MCC. It therefore remains unclear whether the regional preference seen in some airway diseases could originate from local MCC dysfunction. Though great insights have been gained into the genetic basis of cilia ultrastructural defects in airway ciliopathies, the scaling to regional MCC function and subsequent clinical phenotype remains unpredictable. Understanding the multiscale mechanics of MCC would help elucidate genotype-phenotype relationships and enable better diagnostic tools and treatment options. Here, we review the hierarchical and variable organization of ciliated airway epithelium in human lungs and discuss how this organization relates to MCC function. We then discuss the relevancy of these structure-function relationships to current topics in lung disease research. Finally, we examine how state-of-the-art computational approaches can help address existing open questions. This article is part of the Theo Murphy meeting issue 'Unity and diversity of cilia in locomotion and transport'.
机译:粘液间隙(MCC)是人类呼吸系统最重要的防御机制之一。其失败涉及许多慢性和衰弱的气道疾病。然而,由于肺组织的复杂性,我们目前缺乏对解剖学和生物学和MCC运行的这些区域差异之间的关系。例如,尚不清楚气道几何形状,细胞生物学和纤毛机械的区域变异性是否在MCC中发挥作用作用。因此,仍然尚不清楚一些气道疾病中是否可以源自局部MCC功能障碍的区域偏好。虽然在纤维纤维疗法中纤毛超微结构缺陷的遗传基础已经获得了很大的见解,但区域MCC函数和随后的临床表型的缩放仍然是不可预测的。了解MCC的多尺度力学将有助于阐明基因型 - 表型关系,并实现更好的诊断工具和治疗方案。在这里,我们审查人肺中透明的气道上皮的分层和可变组织,并讨论该组织如何涉及MCC函数。然后,我们讨论这些结构功能关系与肺病研究中当前主题的相关性。最后,我们研究了最先进的计算方法如何帮助解决现有的开放性问题。本文是Theo Murphy会议问题的一部分,在机动和运输中智利的慈善团结和多样性。

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