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Merck
CN
  • Airway derived emphysema-specific alveolar type II cells exhibit impaired regenerative potential in COPD.

Airway derived emphysema-specific alveolar type II cells exhibit impaired regenerative potential in COPD.

The European respiratory journal (2024-08-16)
Yan Hu, Qianjiang Hu, Meshal Ansari, Kent Riemondy, Ricardo Pineda, John Sembrat, Adriana S Leme, Kenny Ngo, Olivia Morgenthaler, Kellie Ha, Bifeng Gao, William J Janssen, Maria C Basil, Corrine R Kliment, Edward Morrisey, Mareike Lehmann, Christopher M Evans, Herbert B Schiller, Melanie Königshoff
摘要

Emphysema, the progressive destruction of gas exchange surfaces in the lungs, is a hallmark of chronic obstructive pulmonary disease (COPD) that is presently incurable. This therapeutic gap is largely due to a poor understanding of potential drivers of impaired tissue regeneration, such as abnormal lung epithelial progenitor cells, including alveolar type II (ATII) and airway club cells. We discovered an emphysema-specific sub-population of ATII cells located in enlarged distal alveolar sacs, termed asATII cells. Single cell RNA-seq and in situ localisation revealed that asATII cells co-express the alveolar marker surfactant protein C (SPC) and the club cell marker secretaglobin-3A2 (SCGB3A2). A similar ATII sub-population derived from club cells was also identified in mouse COPD models using lineage labeling. Human and mouse ATII sub-populations formed 80-90% fewer alveolar organoids than healthy controls, indicating reduced progenitor function. Targeting asATII cells or their progenitor club cells could reveal novel COPD treatment strategies.

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产品描述

Sigma-Aldrich
泰莫西芬, ≥99%
Sigma-Aldrich
抗-Prosurfactant蛋白C(proSP-C)抗体, serum, Chemicon®
Sigma-Aldrich
Donkey Anti-Chicken IgY Antibody, FITC conjugate, Species Adsorbed, Chemicon®, from donkey