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Updated: Jun 14, 2026

An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 10, 2013
Highly Effective mRNA-LNP Vaccine Against Respiratory Syncytial Virus (RSV) in Multiple Models
Huarong Bai1, Xueliang Yu1, Yue Gao1
1Starna Therapeutics Co., Ltd., Suzhou 215123, China.
Background:
The transmembrane fusion (F) protein of RSV plays important roles in RSV pathogenesis as it mediates the fusion between the virus and the target cell membrane. During the fusion process, the F protein transits from a metastable state (prefusion, preF) to a stable state (postfusion, postF) after the merging of the virus and cell membranes. The majority of highly neutralizing antibodies induced by natural infection or immunization target the preF form, which makes it the preferred antigen for vaccine development.
Methods:
Here, we designed an effective RSV mRNA vaccine, STR-V003, consisting of mRNA encoding preF protein in lipid nanoparticles (LNPs). The immunogenicity, protection efficacy and toxicity were measured in multiple animal models.
Results:
STR-V003 demonstrated robust immunogenicity in both mice and cotton rats, inducing high levels of neutralizing antibodies and RSV preF-specific IgG antibodies and significantly reducing the RSV viral loads in the lung and nose tissue of challenged animals. In addition, STR-V003 did not show significant enhancement of lung pathology without causing vaccine-enhanced disease (VED). The repeated dose general toxicology studies and local tolerance studies of STR-V003 were evaluated in rats and non-human primate (NHP).
Conclusions:
STR-V003 demonstrates a favorable safety profile and induces robust protective immunity against RSV.
Insights
A new respiratory syncytial virus (RSV) mRNA vaccine, STR-V003, effectively generates protective antibodies and reduces viral load in animal models. The vaccine shows a good safety profile, without causing vaccine-enhanced disease.
Area of Science:
- Virology
- Vaccinology
- Immunology
Background:
- Respiratory syncytial virus (RSV) pathogenesis involves the fusion (F) protein mediating viral entry.
- The prefusion (preF) form of the F protein is a key target for neutralizing antibodies and vaccine development.
- Antibodies targeting preF are crucial for effective RSV neutralization.
Purpose of the Study:
- To design and evaluate an mRNA vaccine (STR-V003) encoding the RSV preF protein.
- To assess the immunogenicity, protective efficacy, and safety of STR-V003 in animal models.
- To determine the potential of STR-V003 as a candidate for RSV prevention.
Main Methods:
- Development of STR-V003, an mRNA vaccine encapsulated in lipid nanoparticles (LNPs).
- Evaluation of immunogenicity, including neutralizing antibodies and preF-specific IgG, in mice and cotton rats.
- Assessment of protection efficacy by measuring viral loads in challenged animals.
- Toxicology studies, including repeated dose and local tolerance, in rats and non-human primates (NHPs).
Main Results:
- STR-V003 induced high levels of neutralizing and preF-specific IgG antibodies in mice and cotton rats.
- Significant reduction in RSV viral loads was observed in the lungs and nasal tissues of vaccinated animals.
- No significant enhancement of lung pathology or vaccine-enhanced disease (VED) was detected.
- Toxicology studies indicated a favorable safety profile for STR-V003.
Conclusions:
- STR-V003 demonstrates robust immunogenicity and protective efficacy against RSV challenge.
- The developed mRNA vaccine exhibits a favorable safety profile in preclinical animal models.
- STR-V003 represents a promising candidate for an effective RSV vaccine.
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