3.8 Article

Fc-Independent Protection from SARS-CoV-2 Infection by Recombinant Human Monoclonal Antibodies

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ANTIBODIES
卷 10, 期 4, 页码 -

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MDPI
DOI: 10.3390/antib10040045

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monoclonal antibodies (mAbs); SARS-CoV-2; fragment crystallizable (Fc); a-glycosylated; K18-hACE2

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This study aimed to investigate the role of Fc-mediated functions in the in-vivo neutralization process of two neutralizing antibodies targeting SARS-CoV-2. The engineered antibodies retained virus neutralization activity in vitro. In infection experiments on transgenic mice, antibody treatment rescued mice from death and reduced viral load, indicating the importance of Fc-mediated functions in antibody-mediated protection.
The use of passively-administered neutralizing antibodies is a promising approach for the prevention and treatment of SARS-CoV-2 infection. Antibody-mediated protection may involve immune system recruitment through Fc-dependent activation of effector cells and the complement system. However, the role of Fc-mediated functions in the efficacious in-vivo neutralization of SARS-CoV-2 is not yet clear, and it is of high importance to delineate the role this process plays in antibody-mediated protection. Toward this aim, we have chosen two highly potent SARS-CoV-2 neutralizing human monoclonal antibodies, MD65 and BLN1 that target distinct domains of the spike (RBD and NTD, respectively). The Fc of these antibodies was engineered to include the triple mutation N297G/S298G/T299A that eliminates glycosylation and the binding to Fc gamma R and to the complement system activator C1q. As expected, the virus neutralization activity (in-vitro) of the engineered antibodies was retained. To study the role of Fc-mediated functions, the protective activity of these antibodies was tested against lethal SARS-CoV-2 infection of K18-hACE2 transgenic mice, when treatment was initiated either before or two days post-exposure. Antibody treatment with both Fc-variants similarly rescued the mice from death reduced viral load and prevented signs of morbidity. Taken together, this work provides important insight regarding the contribution of Fc-effector functions in MD65 and BLN1 antibody-mediated protection, which should aid in the future design of effective antibody-based therapies.

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