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Published on: November 1, 2011
mRNA-LNP Vaccines Encoding for Dengue Optimized prM/ENV Proteins Induce Protective Immunity without ADE
Enzo LaMontia-Hankin1, Clayton J Wollner1, E Taylor Stone2
1Department of Microbiology and Immunology, University of Illinois College of Medicine, Chicago, Illinois, USA.
Abstract:
Dengue virus (DENV) is the most common mosquito-borne virus in the world, causing nearly 400 million infections annually, with the number of cases predict to increase over time. Despite this prevalence there are no widely approved vaccine for DENV naïve individuals or therapeutics. DENV consists of four distinct serotypes, DENV 1-4, that share 60-70% homology. Development of a safe and efficacious pan-Dengue vaccine has been complicated by the potential of antibody-dependent enhancement, in which cross-reactive non-neutralizing antibodies can enhance infection and disease. We previously demonstrated that a mRNA-LNP encoding for DENV-1 prM and Envelope proteins generates homotypic neutralizing immune responses and protects against a lethal challenge. The DENV-1 vaccine avoided ADE by eliminating the fusion loop (FL), one of the dominant ADE epitopes. Using a similar design methodology, here we present mRNA-LNP prM-E vaccines for DENV 2, 3, and 4. These vaccines maintained the ΔFL modifications, but encode a chimeric E protein to improve VLP expression and stability. All three vaccines elicited neutralizing titers of serotype specific antibodies mice and protected against a lethal homotypic DENV challenge. Mutation of the FL lowered ADE in vaccinated mouse sera. We formulated monotypic vaccines into a tetravalent vaccine and evaluated for immunogenicity and protection in mice. The tetravalent vaccine elicited neutralizing humoral responses against all DENV serotypes and protected against lethal challenges. Cumulatively, our monovalent DENV mRNA-LNP vaccines against all DENV serotypes generate protective immunity and lower the potential for ADE, leading to the development of a first-generation ADE-altered tetravalent DENV vaccine.
Insights
A new tetravalent Dengue virus (DENV) vaccine using mRNA-LNP technology was developed. This vaccine protects against all four DENV serotypes and reduces the risk of antibody-dependent enhancement (ADE).
Area of Science:
- Virology
- Immunology
- Vaccine Development
Background:
- Dengue virus (DENV) causes ~400 million infections yearly, with no approved vaccines for naive individuals.
- Four DENV serotypes (DENV 1-4) exist, complicating vaccine development due to potential antibody-dependent enhancement (ADE).
- Previous work showed a DENV-1 mRNA vaccine lacking the fusion loop (FL) protected against DENV and avoided ADE.
Purpose of the Study:
- To develop and evaluate mRNA-LNP vaccines for DENV serotypes 2, 3, and 4.
- To create a tetravalent vaccine combining monotypic DENV vaccines.
- To assess the immunogenicity, protective efficacy, and ADE potential of the tetravalent vaccine.
Main Methods:
- Designed mRNA-LNP vaccines encoding prM-E proteins for DENV 2, 3, and 4, incorporating ΔFL modifications and chimeric E proteins.
- Assessed vaccine immunogenicity and protection against lethal homotypic DENV challenge in mice.
- Formulated monotypic vaccines into a tetravalent vaccine and evaluated its performance in mice.
Main Results:
- Monovalent mRNA-LNP vaccines for DENV 2, 3, and 4 elicited serotype-specific neutralizing antibodies and protected against lethal homotypic challenge.
- Fusion loop mutation reduced ADE in vaccinated mouse sera.
- The tetravalent vaccine induced neutralizing responses against all DENV serotypes and provided protection against lethal challenges.
Conclusions:
- Monovalent DENV mRNA-LNP vaccines generate protective immunity and mitigate ADE risk.
- A first-generation ADE-altered tetravalent DENV vaccine has been developed.
- This approach offers a promising strategy for a safe and effective pan-Dengue vaccine.
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