SARS-CoV-2与吸烟者悖论:纤毛搏动频率和纤毛黏液清除的中介作用?

SPG biomed Pub Date : 2022-02-18 DOI:10.3390/biomed2010009
Ronald B. Brown
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引用次数: 3

摘要

在COVID-19大流行的早期,人们发现了COVID-19吸烟者的悖论——许多研究报告称,吸烟者似乎可以预防SARS-CoV-2感染。相反,其他研究增加了吸烟者悖论的争议,发现重度吸烟者患COVID-19的风险增加。鼻道纤毛上皮内的纤毛搏动频率(CBF)可以被刺激到更高的频率,并提供对气道刺激物短暂暴露的增强保护。吸烟者和接触二手烟的非吸烟者的cbf更高。然而,随着长时间暴露于刺激物,持续上调的CBF会损伤和重塑具有较少保护性纤毛的上皮。此外,粘膜纤毛清除(MCC),呼吸系统的先天防御机制,将颗粒和病原体困在上皮的黏液层内,并通过纤毛活动将它们赶出气道。然而,随着疾病的进展,这种机制变得有缺陷,增加了对病毒性呼吸道感染的易感性。本文提出,与COVID-19患者SARS-CoV-2感染相关的吸烟者悖论可能与短暂暴露于烟草烟雾时睫状体搏动频率和黏液睫状体清除率上调,以及长期暴露于烟草烟雾时CBF和MCC下调有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SARS-CoV-2 and Smoker’s Paradox: Mediation by Ciliary Beat Frequency and Mucociliary Clearance?
A COVID-19 smoker’s paradox was identified during the early days of the COVID-19 pandemic—many studies reported that smokers appeared to be protected against SARS-CoV-2 infections. Conversely, other studies added to the smoker’s paradox controversy with findings of increased risk for COVID-19 in heavy smokers. Ciliary beat frequency (CBF) within the ciliated epithelium of the nasal tract can be stimulated to a higher frequency and provide increased protection against transient exposure to airway irritants. Smokers as well as non-smokers exposed to secondhand tobacco smoke were found to have higher CBFs. However, with extended exposure to irritants, persistent upregulated CBF can damage and remodel the epithelial layer with fewer protective cilia. Additionally, mucociliary clearance (MCC), the innate defense mechanism of the respiratory system, traps particles and pathogens within the mucous layer of the epithelium and propels them out of the airways through ciliary activity. However, this mechanism becomes defective as disease progresses, increasing susceptibility to viral respiratory infections. This paper proposes that a smoker’s paradox associated with SARS-CoV-2 infection in COVID-19 patients may be mediated by upregulated ciliary beating frequency and mucociliary clearance with transient exposure to tobacco smoke, and downregulated CBF and MCC with extended exposure to tobacco smoke.
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