bioRxiv Science⌕ Search

Biology subjects

Khanwalkar, U. S.

Publications and source records attributed to Khanwalkar, U. S..

2 recordsLinked to original sources

Effects and mechanisms of monoclonal and polyclonal human antibodies in protection of humanized mice from HIV-1 challenge

Recent clinical trials of both active and passive immunization demonstrate the barriers to the successful development of efficacious preventative HIV-1 vaccines and prophylactic antibody treatments. More facile means to explore these interventions in preclinical models could fill key gaps in knowledge and contribute to identifying and optimizing the most promising interventions. Here we report simple adaptations to standard virus challenge strategies in the humanized mouse model that support evaluation of antibody-mediated protection from infection with fewer high stakes design choices and demonstrate evaluation of protection afforded by polyclonal human serum IgG antibodies (pAbs) and monoclonal antibodies (mAbs) with variable pharmacokinetic (PK) and functional profiles. Using these adaptations, we observed that both neutralization and Fc-mediated effector functions contribute to the in vivo antiviral activity of broadly-neutralizing antibody VRC01, that confounding of results due to differences in mAb PK can be overcome, and most promisingly, that polyclonal human serum IgG that exhibits potent neutralizing and Fc-effector function can protect from infection. Collectively, this work demonstrates insights into antibody-mediated protection and methods that hold promise in supporting testing the protection from HIV-1 afforded by human pAb responses induced by vaccination.

immunology↗

Improving antibody-mediated protection against HSV infection by eliminating interactions with the viral Fc receptor gE/gI

Herpes simplex virus (HSV) encodes surface glycoproteins that are host defense evasion molecules, allowing the virus to escape immune clearance. In addition to their role in neuropathogenesis and cell-cell spread, glycoproteins E and I (gE/gI) form a viral Fc receptor (vFcR) for most subclasses and allotypes of human IgG and promote evasion of humoral immune responses. While monoclonal antibodies (mAbs) protect mice from neonatal HSV (nHSV) infections, the impact of the vFcR on mAb-mediated protection by binding to IgG is unknown. Using HSV-1 with intact and ablated gE-mediated IgG Fc binding, and Fc-engineered antibodies with modified ability to interact with gE/gI, we investigated the role of the vFcR in viral pathogenesis and mAb-mediated protection from nHSV. The gD-specific human mAb HSV8 modified to lack binding to gE exhibited enhanced neutralization and in vivo protection compared to its native IgG1 form. This improved protection by the engineered mAbs was dependent on the presence of the vFcR. Human IgG3 allotypes lacking vFcR binding also exhibited enhanced antiviral activity in vivo, suggesting that vaccines that robustly induce IgG3 responses could show enhanced protection. suggesting the value of vaccination strategies that robustly induce this subclass. Lastly, analysis of longitudinal responses to acute primary genital infection in humans raised the possibility that unlike most viruses, HSV may exhibited slow induction of IgG3. In summary, this study demonstrates that mAbs lacking the ability to interact with the vFcR can exhibit improved protection from HSV--offering new prospects for antibody-based interventions. One Sentence Summary: The herpes simplex virus neutralizing antibody HSV8 demonstrates improved activity in vitro and in vivo when its IgG Fc domain lacks the ability to bind the viral Fc receptor glycoprotein E/I complex through either Fc engineering or natural human IgG3 allotypes.

immunology↗