bioRxiv · 10.1101/2020.05.01.072876
A molecular atlas of proximal airway identifies subsets of known airway cell types revealing details of the unique molecular pathogenesis of Cystic Fibrosis
Abstract
Introduction/AbstractCystic fibrosis (CF) is a lethal autosomal recessive disorder that afflicts in excess of 70,000 people globally. People with CF experience multi-organ dysfunction resulting from aberrant electrolyte transport across polarized epithelia due to mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene. CF-related lung disease is by far the most significant determinant of morbidity and mortality. In this study we report results from a multi-institute consortium in which single cell transcriptomics were applied to define disease-related changes to the proximal airway of CF donors (n=19) undergoing transplantation for end-stage lung disease compared to the proximal airway of previously healthy lung donors (n=19). We found that all major airway epithelial cell types were conserved between control and CF donors. Disease-dependent differences were observed, including an overabundance of epithelial cells transitioning to specialized ciliated and secretory cell subtypes coupled with an unexpected decrease in cycling basal cells. This study developed a molecular atlas of the proximal airway epithelium that will provide insights for the development of new targeted therapies for CF airway disease.
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Carraro, G., Langerman, J., Sabri, S., Lorenzana, Z., Purkayastha, A., Konda, B., Aros, C. J., Calvert, B. A., Szymaniak, A., Wilson, E., Mulligan, M., Bhatt, P., Vijayaraj, P., Yao, C., Shia, D. W., Israely, E., Rickabaugh, T. M., Mense, M., Randell, S. H., Vladar, E. K., Ryan, A. L., Plath, K., Mahoney, J., Stripp, B. R., Gomperts, B. N.. 2020-05-05. A molecular atlas of proximal airway identifies subsets of known airway cell types revealing details of the unique molecular pathogenesis of Cystic Fibrosis. https://doi.org/10.1101/2020.05.01.072876
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