Antiviral and Anti-Inflammatory Therapeutic Effect of RAGE-Ig Protein against Multiple SARS-CoV-2 Variants of Concern Demonstrated in K18-hACE2 Mouse and Syrian Golden Hamster Models

Author:

Dhanushkodi Nisha Rajeswari1ORCID,Prakash Swayam1ORCID,Quadiri Afshana1ORCID,Zayou Latifa1,Srivastava Ruchi1,Shaik Amin Mohammed1ORCID,Suzer Berfin1ORCID,Ibraim Izabela Coimbra2,Landucci Gary2,Tifrea Delia F.3,Singer Mahmoud1ORCID,Jamal Leila1,Edwards Robert A.3ORCID,Vahed Hawa4,Brown Lawrence5,BenMohamed Lbachir1467

Affiliation:

1. *Laboratory of Cellular and Molecular Immunology, Gavin Herbert Eye Institute, University of California, Irvine, School of Medicine, Irvine, CA

2. †High Containment Facility, University of California, Irvine, School of Medicine, Irvine, CA

3. ‡Department of Pathology and Laboratory Medicine, University of California, Irvine School of Medicine, Irvine, CA

4. §Department of Vaccines and Immunotherapies, TechImmune, LLC, University Lab Partners, Irvine, CA

5. ¶Galactica Pharmaceuticals, Inc., Villanova, PA

6. ‖Department of Molecular Biology & Biochemistry, University of California, Irvine, School of Medicine, Irvine, CA

7. #Institute for Immunology, University of California, Irvine, School of Medicine, Irvine, CA

Abstract

Abstract SARS-CoV-2 variants of concern (VOCs) continue to evolve and reemerge with chronic inflammatory long COVID sequelae, necessitating the development of anti-inflammatory therapeutic molecules. Therapeutic effects of the receptor for advanced glycation end products (RAGE) were reported in many inflammatory diseases. However, a therapeutic effect of RAGE in COVID-19 has not been reported. In the present study, we investigated whether and how the RAGE-Ig fusion protein would have an antiviral and anti-inflammatory therapeutic effect in the COVID-19 system. The protective therapeutic effect of RAGE-Ig was determined in vivo in K18-hACE2 transgenic mice and Syrian golden hamsters infected with six VOCs of SARS-CoV-2. The underlying antiviral mechanism of RAGE-Ig was determined in vitro in SARS-CoV-2–infected human lung epithelial cells (BEAS-2B). Following treatment of K18-hACE2 mice and hamsters infected with various SARS-CoV-2 VOCs with RAGE-Ig, we demonstrated (1) significant dose-dependent protection (i.e., greater survival, less weight loss, lower virus replication in the lungs); (2) a reduction of inflammatory macrophages (F4/80+/Ly6C+) and neutrophils (CD11b+/Ly6G+) infiltrating the infected lungs; (3) a RAGE-Ig dose-dependent increase in the expression of type I IFNs (IFN-α and IFN-β) and type III IFN (IFNλ2) and a decrease in the inflammatory cytokines (IL-6 and IL-8) in SARS-CoV-2–infected human lung epithelial cells; and (4) a dose-dependent decrease in the expression of CD64 (FcgR1) on monocytes and lung epithelial cells from symptomatic COVID-19 patients. Our preclinical findings revealed type I and III IFN-mediated antiviral and anti-inflammatory therapeutic effects of RAGE-Ig protein against COVID-19 caused by multiple SARS-CoV-2 VOCs.

Funder

HHS | NIH | National Institute of Allergy and Infectious Diseases

Publisher

The American Association of Immunologists

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