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Updated: Sep 17, 2025

Isolating Bronchial Epithelial Cells from Resected Lung Tissue for Biobanking and Establishing Well-Differentiated Air-Liquid Interface Cultures
Published on: May 26, 2023
RFFL inhibition increases cell surface CFTR and reduces IL-8 production in airway epithelial cells upon
Daichi Hinata1, Shiori Beppu1, Yuka Kamada1
1Department of Biomedical Sciences, School of Biological and Environmental Sciences, Kwansei Gakuin University, Hyogo, 669-1330, Japan.
Abstract:
Chronic exposure to environmental pathogens and pollutants can impair CFTR chloride channel function, contributing to chronic obstructive pulmonary disease (COPD). Our previous study demonstrated that pyocyanin (PYO), a COPD-associated pathogen factor, significantly reduces the functional expression of R75Q- or M470V-CFTR, two CFTR polymorphisms found in COPD patients, leading to increased IL-8 production in airway epithelial cells (AEC). In this study, we report that inhibition of RFFL, a ubiquitin ligase that targets CFTR mutants for removal from the plasma membrane (PM), mitigates excessive IL-8 production in AECs expressing R75Q- or M470V-CFTR, even in the presence of PYO. RFFL knockdown (KD) enhanced the functional PM expression of R75Q- or M470V-CFTR under PYO exposure, although it did not prevent PYO-induced CFTR downregulation. Our results indicate that RFFL likely regulates constitutive IL-8 production independently of CFTR, while also modulating pathogen-induced IL-8 expression through a CFTR-dependent mechanism. This highlights the potential of RFFL inhibitors to enhance CFTR function and reduce IL-8 secretion, even amid chronic exposure to environmental pathogens and pollutants, underscoring RFFL inhibition as a promising therapeutic approach for COPD management.
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