Angiotensin-converting enzyme 2 in peripheral lung club cells modulates the susceptibility to SARS-CoV-2 in chronic obstructive pulmonary disease

Author:

Peng Yang12ORCID,Wang Zhao-Ni1,Chen Shi-Ying1,Xu Ai-Ru1,Fang Zhang-Fu1,Sun Jing1,Zhou Zi-Qing1,Hou Xiao-Tao3,Cen Lai-Jian1,Ma Jian-Juan1,Zhao Jin-Cun1,Guan Wei-Jie145,Wang De-Yun2,Zhong Nan-Shan1

Affiliation:

1. State Key Laboratory of Respiratory Disease, National Clinical Research Center for Respiratory Disease, Guangzhou Institute of Respiratory Health, First Affiliated Hospital of Guangzhou Medical University, Guangzhou Medical University, Guangzhou, Guangdong, China

2. Department of Otolaryngology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore

3. Guangzhou KingMed Center for Clinical Laboratory Company, Limited, Guangzhou, China

4. Department of Thoracic Surgery, Guangzhou Institute for Respiratory Health, The First Affiliated Hospital of Guangzhou Medical University, China

5. Department of Respiratory and Critical Care Medicine, Foshan Second People’s Hospital, Affiliated Foshan Hospital of Southern Medical University, Foshan, Guangdong, China

Abstract

Accumulating evidence has confirmed that chronic obstructive pulmonary disease (COPD) is a risk factor for development of severe pathological changes in the peripheral lungs of patients with COVID-19. However, the underlying molecular mechanisms remain unclear. Because bronchiolar club cells are crucial for maintaining small airway homeostasis, we sought to explore whether the altered susceptibility to SARS-CoV-2 infection of the club cells might have contributed to the severe COVID-19 pneumonia in COPD patients. Our investigation on the quantity and distribution patterns of angiotensin-converting enzyme 2 (ACE2) in airway epithelium via immunofluorescence staining revealed that the mean fluorescence intensity of the ACE2-positive epithelial cells was significantly higher in club cells than those in other epithelial cells (including ciliated cells, basal cells, goblet cells, neuroendocrine cells, and alveolar type 2 cells). Compared with nonsmokers, the median percentage of club cells in bronchiolar epithelium and ACE2-positive club cells was significantly higher in COPD patients. In vitro, SARS-CoV-2 infection (at a multiplicity of infection of 1.0) of primary small airway epithelial cells, cultured on air-liquid interface, confirmed a higher percentage of infected ACE2-positive club cells in COPD patients than in nonsmokers. Our findings have indicated the role of club cells in modulating the pathogenesis of SARS-CoV-2-related severe pneumonia and the poor clinical outcomes, which may help physicians to formulate a novel therapeutic strategy for COVID-19 patients with coexisting COPD.

Funder

Guangzhou Institute for Respiratory Health Open Project

MOH | National Medical Research Council

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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