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Macaque Monoclonal Antibodies Targeting Novel Conserved Epitopes within Filovirus Glycoprotein
Zhen-Yong Keck1, Sven G Enterlein2, Katie A Howell2
1Department of Pathology, Stanford University, Stanford, California, USA.
Unlabelled:
Filoviruses cause highly lethal viral hemorrhagic fever in humans and nonhuman primates. Current immunotherapeutic options for filoviruses are mostly specific to Ebola virus (EBOV), although other members of Filoviridae such as Sudan virus (SUDV), Bundibugyo virus (BDBV), and Marburg virus (MARV) have also caused sizeable human outbreaks. Here we report a set of pan-ebolavirus and pan-filovirus monoclonal antibodies (MAbs) derived from cynomolgus macaques immunized repeatedly with a mixture of engineered glycoproteins (GPs) and virus-like particles (VLPs) for three different filovirus species. The antibodies recognize novel neutralizing and nonneutralizing epitopes on the filovirus glycoprotein, including conserved conformational epitopes within the core regions of the GP1 subunit and a novel linear epitope within the glycan cap. We further report the first filovirus antibody binding to a highly conserved epitope within the fusion loop of ebolavirus and marburgvirus species. One of the antibodies binding to the core GP1 region of all ebolavirus species and with lower affinity to MARV GP cross neutralized both SUDV and EBOV, the most divergent ebolavirus species. In a mouse model of EBOV infection, this antibody provided 100% protection when administered in two doses and partial, but significant, protection when given once at the peak of viremia 3 days postinfection. Furthermore, we describe novel cocktails of antibodies with enhanced protective efficacy compared to individual MAbs. In summary, the present work describes multiple novel, cross-reactive filovirus epitopes and innovative combination concepts that challenge the current therapeutic models.
Importance:
Filoviruses are among the most deadly human pathogens. The 2014-2015 outbreak of Ebola virus disease (EVD) led to more than 27,000 cases and 11,000 fatalities. While there are five species of Ebolavirus and several strains of marburgvirus, the current immunotherapeutics primarily target Ebola virus. Since the nature of future outbreaks cannot be predicted, there is an urgent need for therapeutics with broad protective efficacy against multiple filoviruses. Here we describe a set of monoclonal antibodies cross-reactive with multiple filovirus species. These antibodies target novel conserved epitopes within the envelope glycoprotein and exhibit protective efficacy in mice. We further present novel concepts for combination of cross-reactive antibodies against multiple epitopes that show enhanced efficacy compared to monotherapy and provide complete protection in mice. These findings set the stage for further evaluation of these antibodies in nonhuman primates and development of effective pan-filovirus immunotherapeutics for use in future outbreaks.
Insights
New monoclonal antibodies offer broad protection against deadly filoviruses like Ebola and Marburg. These cross-reactive antibodies target conserved viral epitopes and show promise in protecting against future outbreaks.
Area of Science:
- Virology
- Immunology
- Pathogen Research
Background:
- Filoviruses, including Ebola virus (EBOV), Sudan virus (SUDV), Bundibugyo virus (BDBV), and Marburg virus (MARV), cause severe and often fatal hemorrhagic fevers.
- Current immunotherapies predominantly target EBOV, leaving a critical gap in protection against other filovirus species responsible for significant human outbreaks.
- The unpredictable nature of future filovirus outbreaks necessitates the development of broad-spectrum therapeutics with cross-protective capabilities.
Purpose of the Study:
- To develop and characterize novel monoclonal antibodies (MAbs) with pan-ebolavirus and pan-filovirus reactivity.
- To identify new conserved epitopes on the filovirus glycoprotein targeted by these MAbs.
- To evaluate the therapeutic potential of individual MAbs and antibody cocktails in a preclinical mouse model.
Main Methods:
- Cynomolgus macaques were immunized with engineered filovirus glycoproteins and virus-like particles (VLPs) from multiple species.
- Monoclonal antibodies were generated and screened for binding to various filovirus glycoproteins and for neutralizing activity.
- Antibody efficacy was assessed in a mouse model of EBOV infection, including protection studies with single doses and combination therapies.
Main Results:
- A set of pan-ebolavirus and pan-filovirus MAbs were generated, recognizing novel neutralizing and non-neutralizing epitopes on the filovirus glycoprotein.
- One MAb demonstrated cross-neutralization of EBOV and SUDV by binding to a conserved GP1 core epitope, providing 100% protection in mice when administered twice and partial protection with a single dose.
- Novel antibody cocktails exhibited enhanced protective efficacy compared to individual MAbs, achieving complete protection in mice.
Conclusions:
- The study identified novel, cross-reactive epitopes on filovirus glycoproteins, expanding the understanding of potential therapeutic targets.
- Developed MAbs and antibody cocktails demonstrate significant potential for broad-spectrum protection against filovirus infections.
- These findings lay the groundwork for advancing pan-filovirus immunotherapeutics for future outbreak preparedness.
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