Drug Repurposing for Cystic Fibrosis: Identification of Drugs That Induce CFTR-Independent Fluid Secretion in Nasal Organoids
Rodenburg, Lisa W.; Delpiano, Livia; Railean, Violeta; Centeio, Raquel; Pinto, Madalena C.; Smits, Shannon M.A.; van der Windt, Isabelle S.; van Hugten, Casper F.J.; van Beuningen, Sam F.B.; Rodenburg, Remco N.P.; van der Ent, Cornelis K.; Amaral, Margarida D.; Kunzelmann, Karl; Gray, Michael A.; Beekman, Jeffrey M.; Amatngalim, Gimano D.
(2022) International Journal of Molecular Sciences, volume 23, issue 20
(Article)
Abstract
Individuals with cystic fibrosis (CF) suffer from severe respiratory disease due to a genetic defect in the cystic fibrosis transmembrane conductance regulator (CFTR) gene, which impairs airway epithelial ion and fluid secretion. New CFTR modulators that restore mutant CFTR function have been recently approved for a large group of people
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with CF (pwCF), but ~19% of pwCF cannot benefit from CFTR modulators Restoration of epithelial fluid secretion through non-CFTR pathways might be an effective treatment for all pwCF. Here, we developed a medium-throughput 384-well screening assay using nasal CF airway epithelial organoids, with the aim to repurpose FDA-approved drugs as modulators of non-CFTR-dependent epithelial fluid secretion. From a ~1400 FDA-approved drug library, we identified and validated 12 FDA-approved drugs that induced CFTR-independent fluid secretion. Among the hits were several cAMP-mediating drugs, including β2-adrenergic agonists. The hits displayed no effects on chloride conductance measured in the Ussing chamber, and fluid secretion was not affected by TMEM16A, as demonstrated by knockout (KO) experiments in primary nasal epithelial cells. Altogether, our results demonstrate the use of primary nasal airway cells for medium-scale drug screening, target validation with a highly efficient protocol for generating CRISPR-Cas9 KO cells and identification of compounds which induce fluid secretion in a CFTR- and TMEM16A-indepent manner.
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Keywords: Adrenergic Agonists/metabolism, Chlorides/metabolism, Cystic Fibrosis Transmembrane Conductance Regulator/genetics, Cystic Fibrosis/drug therapy, Drug Repositioning, Epithelial Cells/metabolism, Humans, Organoids/metabolism, Journal Article
ISSN: 1661-6596
Publisher: Multidisciplinary Digital Publishing Institute (MDPI)
Note: Funding Information: This work was funded by UK Cystic Fibrosis Trust (SRC013). Work in M.D.A. lab was also supported by UIDB/04046/2020 and UIDP/04046/2020 Centre grants (to BioISI), from FCT-Fundação para a Ciência e a Tecnologia/MCTES Portugal. Publisher Copyright: © 2022 by the authors.
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