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微观尺度肺损伤对新冠病毒肺炎肺通气动力学的影响:一项叙述性综述。

Implications of microscale lung damage for COVID-19 pulmonary ventilation dynamics: A narrative review.

作者信息

Dimbath Elizabeth, Maddipati Veeranna, Stahl Jennifer, Sewell Kerry, Domire Zachary, George Stephanie, Vahdati Ali

机构信息

Department of Engineering, College of Engineering and Technology, East Carolina University, Greenville, NC, USA.

Brody School of Medicine, East Carolina University, Greenville, NC, USA.

出版信息

Life Sci. 2021 Jun 1;274:119341. doi: 10.1016/j.lfs.2021.119341. Epub 2021 Mar 11.

Abstract

The COVID-19 pandemic surges on as vast research is produced to study the novel SARS-CoV-2 virus and the disease state it induces. Still, little is known about the impact of COVID-19-induced microscale damage in the lung on global lung dynamics. This review summarizes the key histological features of SARS-CoV-2 infected alveoli and links the findings to structural tissue changes and surfactant dysfunction affecting tissue mechanical behavior similar to changes seen in other lung injury. Along with typical findings of diffuse alveolar damage affecting the interstitium of the alveolar walls and blood-gas barrier in the alveolar airspace, COVID-19 can cause extensive microangiopathy in alveolar capillaries that further contribute to mechanical changes in the tissues and may differentiate it from previously studied infectious lung injury. Understanding microlevel damage impact on tissue mechanics allows for better understanding of macroscale respiratory dynamics. Knowledge gained from studies into the relationship between microscale and macroscale lung mechanics can allow for optimized treatments to improve patient outcomes in case of COVID-19 and future respiratory-spread pandemics.

摘要

随着大量研究致力于研究新型严重急性呼吸综合征冠状病毒2(SARS-CoV-2)及其引发的疾病状态,新冠疫情仍在肆虐。然而,关于新冠病毒在肺部造成的微观损伤对全球肺动力学的影响,我们所知甚少。本综述总结了感染SARS-CoV-2的肺泡的关键组织学特征,并将这些发现与影响组织力学行为的结构组织变化和表面活性剂功能障碍联系起来,这些变化类似于其他肺损伤中所见的变化。除了影响肺泡壁间质和肺泡气腔中气血屏障的弥漫性肺泡损伤的典型表现外,新冠病毒还可导致肺泡毛细血管广泛的微血管病变,这进一步加剧了组织的力学变化,并可能使其有别于先前研究的感染性肺损伤。了解微观损伤对组织力学的影响有助于更好地理解宏观呼吸动力学。从微观和宏观肺力学关系研究中获得的知识,可以为优化治疗方案提供依据,从而改善新冠疫情及未来呼吸道传播大流行情况下的患者预后。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eead/7946865/e5d96de453f6/ga1_lrg.jpg

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