Related Experiment Video
Updated: Jan 18, 2026

Primary Human Nasal Epithelial Cells: Biobanking in the Context of Precision Medicine
Published on: April 22, 2022
Developing Type II F508del-CFTR correctors with a protective effect against respiratory viruses
Francesca Barbieri1, Maria Grazia Martina1, Emanuela Pesce2
1Dipartimento di Scienze degli Alimenti e del Farmaco (DipALIFAR), Università degli Studi di Parma, Viale delle Scienze, 27/A, 43124, Parma, Italy.
None:
Cystic fibrosis (CF) is a multifaceted disease caused by mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene. The resulting thick mucus accumulation increases the risk of microbial infections, leading to chronic lung inflammation, progressive tissue damage, and pulmonary exacerbations (PEs). Respiratory viruses may facilitate bacterial colonization, significantly contributing to PEs. Therefore, patients with CF could benefit from a timely antiviral treatment targeting respiratory viruses (e.g., rhinoviruses). Herein, we present novel multitarget agents that combine F508del-CFTR correction with broad-spectrum antiviral activity through inhibition of the host protein PI4KB, offering a promising therapeutic strategy to prevent pulmonary exacerbations in cystic fibrosis with no risk of developing antiviral drug resistance. Among the most active candidates, the bithiazole 3b showed broad-spectrum antiviral activity in the sub- or low-micromolar range against selected viruses from the Picornaviridae, Flaviviridae, and Coronaviridae families, and a notable F508del-CFTR correction-both alone and in combination with VX809-in FRT cells. Further confirmation of CFTR correction was obtained in the CFBE41o- cell line and in primary cultures of human airway epithelial cells homozygous for F508del, the gold standard for evaluating CFTR rescue strategies, particularly in combination with VX445. In addition to its biological activity, compound 3b exhibited a favorable preclinical pharmacokinetic profile in vitro. These findings collectively highlight compound 3b as a promising multitarget candidate for cystic fibrosis, providing a solid foundation for the development of a simplified CF therapy to mitigate PE.
More Related Videos
08:00Generation of Human Nasal Epithelial Cell Spheroids for Individualized Cystic Fibrosis Transmembrane Conductance Regulator Study
Published on: April 11, 2018
07:04Forskolin-induced Swelling in Intestinal Organoids: An In Vitro Assay for Assessing Drug Response in Cystic Fibrosis Patients
Published on: February 11, 2017
Related Concept Videos
Cystic Fibrosis: Management
Sinus disease and chronic...
Cystic Fibrosis: Pathogenesis
CF is primarily caused by a genetic mutation in a chromosome 7 gene coding for the cystic fibrosis transmembrane conductance regulator (CFTR) protein. The most common gene mutation leading to CF is the ΔF508 mutation,...
Upper Respiratory Drugs: Antitussives, Expectorants, and Mucolytics
Antitussives include codeine, dextromethorphan (Robitussin), and benzonatate (Tessalon). Codeine and dextromethorphan exert their effects centrally by suppressing the cough reflex center in the medulla. Benzonatate operates peripherally within the respiratory tract by...
Common Respiratory Disorders
Upper respiratory disorders impact the airways above the vocal cords, encompassing areas like the nose, sinuses, and throat. Various conditions fall under this category, including the common cold and allergic rhinitis. These disorders can stem from several causes,...
Acute Respiratory Failure-V
Ensure that patients are monitored continuously for their response to therapy, including changes in...
Chronic Obstructive Pulmonary Disease-II: Pathophysiology
Chronic Inflammation