作者
Hiroaki Katsura, Vishwaraj Sontake, Aleksandra Tata, Yoshihiko Kobayashi, Caitlin E Edwards, Brook E Heaton, Arvind Konkimalla, Takanori Asakura, Yu Mikami, Ethan J Fritch, Patty J Lee, Nicholas S Heaton, Richard C Boucher, Scott H Randell, Ralph S Baric, Purushothama Rao Tata
发表日期
2020/12/3
期刊
Cell stem cell
卷号
27
期号
6
页码范围
890-904. e8
出版商
Elsevier
简介
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an understanding of coronavirus disease 2019 (COVID-19) pathogenesis. Here, we report a feeder-free, scalable, chemically defined, and modular alveolosphere culture system for the propagation and differentiation of human alveolar type 2 cells/pneumocytes derived from primary lung tissue. Cultured pneumocytes express the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) receptor angiotensin-converting enzyme receptor type-2 (ACE2) and can be infected with virus. Transcriptome and histological analysis of infected alveolospheres mirror features of COVID-19 lungs, including emergence of interferon (IFN)-mediated inflammatory responses, loss of surfactant proteins, and apoptosis. Treatment of alveolospheres with …
引用总数
20202021202220232024894999832