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A model of persistent post SARS-CoV-2 induced lung disease for target identification and testing of therapeutic strategies

Authors :
Kenneth H. Dinnon
Sarah R. Leist
Kenichi Okuda
Hong Dang
Ethan J. Fritch
Kendra L. Gully
Gabriela De la Cruz
Mia D. Evangelista
Takanori Asakura
Rodney C. Gilmore
Padraig Hawkins
Satoko Nakano
Ande West
Alexandra Schäfer
Lisa E. Gralinski
Jamie L. Everman
Satria P. Sajuthi
Mark R. Zweigart
Stephanie Dong
Jennifer McBride
Michelle R. Cooley
Jesse B. Hines
Miriya K. Love
Steve D. Groshong
Alison VanSchoiack
Stefan J. Phelan
Yan Liang
Tyler Hether
Michael Leon
Ross E. Zumwalt
Lisa M. Barton
Eric J. Duval
Sanjay Mukhopadhyay
Edana Stroberg
Alain Borczuk
Leigh B. Thorne
Muthu K. Sakthivel
Yueh Z. Lee
James S. Hagood
Jason R. Mock
Max A. Seibold
Wanda K. O’Neal
Stephanie A. Montgomery
Richard C. Boucher
Ralph S. Baric
Source :
bioRxiv : the preprint server for biology.
Publication Year :
2022

Abstract

COVID-19 survivors develop post-acute sequelae of SARS-CoV-2 (PASC), but the mechanistic basis of PASC-associated lung abnormalities suffers from a lack of longitudinal samples. Mouse-adapted SARS-CoV-2 MA10 produces an acute respiratory distress syndrome (ARDS) in mice similar to humans. To investigate PASC pathogenesis, studies of MA10-infected mice were extended from acute disease through clinical recovery. At 15-120 days post-virus clearance, histologic evaluation identified subpleural lesions containing collagen, proliferative fibroblasts, and chronic inflammation with tertiary lymphoid structures. Longitudinal spatial transcriptional profiling identified global reparative and fibrotic pathways dysregulated in diseased regions, similar to human COVID-19. Populations of alveolar intermediate cells, coupled with focal upregulation of pro-fibrotic markers, were identified in persistently diseased regions. Early intervention with antiviral EIDD-2801 reduced chronic disease, and early anti-fibrotic agent (nintedanib) intervention modified early disease severity. This murine model provides opportunities to identify pathways associated with persistent SARS-CoV-2 pulmonary disease and test countermeasures to ameliorate PASC.

Details

Database :
OpenAIRE
Journal :
bioRxiv : the preprint server for biology
Accession number :
edsair.doi.dedup.....a6c3bceca188f05d6c7291ce768e22b2