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Updated: Feb 19, 2026

Generation, Amplification, and Titration of Recombinant Respiratory Syncytial Viruses
Published on: April 4, 2019
Respiratory Syncytial Virus: Targeting the G Protein Provides a New Approach for an Old Problem
Ralph A Tripp1, Ultan F Power2, Peter J M Openshaw3
1University of Georgia, College of Veterinary Medicine, Department of Infectious Diseases, Athens, Georgia, USA.
Insights
New research explores targeting the Respiratory Syncytial Virus (RSV) G protein as an alternative to the F protein. A promising human monoclonal antibody shows potent antiviral activity in mouse models.
Area of Science:
- Virology
- Immunology
- Vaccinology
Background:
- Respiratory Syncytial Virus (RSV) is a significant cause of lower respiratory tract infections (LRTI) in young children and the elderly, with millions affected globally.
- Current treatments for RSV are limited, and recent vaccine and antibody trials targeting the RSV F protein have faced setbacks.
- Despite challenges, research continues on the RSV F protein, but the RSV G protein is re-emerging as a viable alternative target.
Purpose of the Study:
- To investigate the potential of targeting the RSV G protein as a novel therapeutic strategy.
- To evaluate the efficacy of a human monoclonal antibody against the RSV G protein in preclinical models.
Main Methods:
- Preclinical studies using mouse models were conducted.
- A high-affinity, strain-independent human monoclonal antibody targeting the RSV G protein was developed and tested.
Main Results:
- The human monoclonal antibody demonstrated potent direct antiviral activity against RSV.
- The antibody also showed efficacy in alleviating virus-induced immune responses contributing to disease pathology in mouse models.
Conclusions:
- Targeting the RSV G protein represents a promising new approach for RSV management.
- A human monoclonal antibody against the G protein offers a potential new therapeutic option, particularly for populations not benefiting from existing prophylaxis.
Abstract:
Respiratory syncytial virus (RSV) is a major cause of lower respiratory tract infection (LRTI) annually affecting >2 million children in the United States <5 years old. In the elderly (>65 years old), RSV results in ∼175,000 hospitalizations annually in the United States with a worldwide incidence of ∼34 million. There is no approved RSV vaccine, and treatments are limited. Recently, a phase 3 trial in the elderly using a recombinant RSV F protein vaccine failed to meet its efficacy objectives, namely, prevention of moderate-to-severe RSV-associated LRTI and reduced incidence of acute respiratory disease. Moreover, a recent phase 3 trial evaluating suptavumab (REGN2222), an antibody to RSV F protein, did not meet its primary endpoint of preventing medically attended RSV infections in preterm infants. Despite these setbacks, numerous efforts targeting the RSV F protein with vaccines, antibodies, and small molecules continue based on the commercial success of a monoclonal antibody (MAb) against the RSV F protein (palivizumab). As the understanding of RSV biology has improved, the other major coat protein, the RSV G protein, has reemerged as an alternative target reflecting progress in understanding its roles in infecting bronchial epithelial cells and in altering the host immune response. In mouse models, a high-affinity, strain-independent human MAb to the RSV G protein has shown potent direct antiviral activity combined with the alleviation of virus-induced immune system effects that contribute to disease pathology. This MAb, being prepared for clinical trials, provides a qualitatively new approach to managing RSV for populations not eligible for prophylaxis with palivizumab.
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