Investigation of the role of the cystic fibrosis transmembrane conductance regulator (CFTR) in SARS-CoV-2 pathogenesis 2308341
Abstract
Abstract Introduction Acute lung injury and persistent inflammation caused by SARS-CoV-2 may lead to further complications after the virus gets cleared. People with Cystic fibrosis (pwCF) are highly vulnerable to pulmonary diseases due to mutations in the CFTR gene. However, there is limited research about SARS-CoV-2 severity in pwCF and subjects carrying a single variant of this gene. Methods Middle-aged (4-5 months old) and elderly (>18 months) mice expressing various levels of CFTR (WT, CFTR Knock out (KO), and heterozygous for CFTR (HET)) were infected with the mouse-adapted SARS-CoV-2 virus, MA10. Body weight and body temperature were measured in addition to spike specific antibodies detected by ELISA, flow cytometry on immune cells from blood samples, and lung histology. Results Middle-aged KO mice significantly lost less weight than WT and HET mice for both male and female mice. However, HET males lost significantly more weight compared to WT and KO male mice (p = 0.0058 and 0.0004, respectively). HET mice body weight recovery took much longer especially in males for both middle-aged and aged mice (∼28 days for middle-aged mice vs 21 days for KO mice, and 51 days for aged mice vs 25 days for KO mice). Conclusion This study highlights the significance of carrying CFTR mutation in susceptibility and lung pathology to COVID-19. Our data show that the severity of SARS-CoV-2 infection in different mice CFTR genotypes is highly dependent on the age and gender. Funding Source Internal OSU funding Topic Categories Viral Immunology (VIR)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (7)
Mohamed Wahba
Prosper Boyaka
Ohio State University
Estelle Cormet-Boyaka
SunHee Kim
Douglas Natoce
Ohio State University
Rachael Rayner
The Ohio State University
SungJun Yoo
Ohio State University