A single-cell atlas of in vitro multiculture systems uncovers the in vivo lineage trajectory and cell state in the human lung

Author:

Lee Woochan,Lee Seyoon,Yoon Jung-Ki,Lee Dakyung,Kim Yuri,Han Yeon Bi,Kim Rokhyun,Moon Sungji,Park Young Jun,Park Kyunghyuk,Cha Bukyoung,Choi Jaeyong,Kim Juhyun,Ha Na-young,Kim Kwhanmien,Cho Sukki,Cho Nam-HyukORCID,Desai Tushar J.,Chung Jin-Haeng,Lee Joo-HyeonORCID,Kim Jong-IlORCID

Abstract

AbstractWe present an in-depth single-cell atlas of in vitro multiculture systems on human primary airway epithelium derived from normal and diseased lungs of 27 individual donors. Our large-scale single-cell profiling identified new cell states and differentiation trajectories of rare airway epithelial cell types in human distal lungs. By integrating single-cell datasets of human lung tissues, we discovered immune-primed subsets enriched in lungs and organoids derived from patients with chronic respiratory disease. To demonstrate the full potential of our platform, we further illustrate transcriptomic responses to various respiratory virus infections in vitro airway models. Our work constitutes a single-cell roadmap for the cellular and molecular characteristics of human primary lung cells in vitro and their relevance to human tissues in vivo.

Publisher

Springer Science and Business Media LLC

Subject

Clinical Biochemistry,Molecular Biology,Molecular Medicine,Biochemistry

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