上皮黏液分泌过多与呼吸道疾病。

Henry Danahay, Alan D Jackson
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引用次数: 37

摘要

黏液的产生、分泌和清除被认为在维持气道健康中起着关键作用,然而在COPD等疾病中,流行病学和病理学研究表明,过量的黏液会导致气道堵塞和肺部健康下降。气道表面上皮由多种不同类型的细胞组成,其中一种是杯状细胞,专门用于分泌凝胶形成的粘蛋白。对刺激物和微生物反应的上皮细胞组成和功能的变化通常会导致粘膜纤毛清除(MCC)系统主要方面的协调功能增强,即粘液分泌、离子/流体运输和纤毛功能。慢性阻塞性肺病患者气道中粘液塞的存在表明MCC系统的各个方面已经受到损害,即正常协调的上皮功能已经失去耦合。人们对导致这种分离的过程几乎一无所知。了解这些过程可能有助于深入了解上皮完整性调节和COPD等呼吸系统疾病的发生机制。在这篇综述中,我们将讨论气道上皮细胞组成和功能的调节,主要涉及杯状细胞的形成、粘液分泌、气道表面液体(ASL)稳态、分泌粘液的水合作用和纤毛清除。我们将讨论细胞群之间的功能重叠,来自不同祖细胞的衍生的潜在影响以及在表面上皮中产生高杯状细胞密度的含义。本综述的目的是激发讨论并提出有助于确定呼吸道疾病上皮功能障碍背后机制的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epithelial mucus-hypersecretion and respiratory disease.

Mucus production, secretion and clearance are considered to play a critical role in maintenance of airway health, however in diseases such as COPD, epidemiological and pathological studies suggest that excess mucus contributes to airway plugging and decline in lung health. The airway surface epithelium is composed of a heterogeneous mix of cell types one of which, the goblet cell, is dedicated to the production of secretory gel-forming mucins. Changes in epithelial cellular composition and function in response to irritants and microbes generally leads to enhanced co-ordinated functioning of the major facets of the mucociliary clearance (MCC) system i.e. mucus secretion, ion/fluid transport and ciliary function. The presence of mucus plugs in the airways of COPD patients demonstrates that facets of the MCC system have become compromised i.e. normally co-ordinated epithelial functions have become uncoupled. Almost nothing is known about the processes leading to such uncoupling. Understanding these processes may provide insights into mechanisms involved in regulation of epithelial integrity and the genesis of respiratory diseases such as COPD. In this review we will discuss regulation of airway epithelial cellular composition and function primarily with respect to goblet cell formation, mucus secretion, airway surface liquid (ASL) homeostasis, hydration of secreted mucus and ciliary clearance. We will discuss the functional overlap between cell populations, the potential impact of derivation from different progenitors and the implications of generating high goblet cell densities in the surface epithelium. The aim of this review is to stimulate discussion and develop hypotheses that could help to determine the mechanisms behind epithelial dysfunction in respiratory disease.

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