Immunological Strategies for Enhancing Viral Neutralization and Protection in Antibody-Guided Vaccine Design

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Abstract

Background: Immunological strategies for antibody-guided vaccine design intend to enhance viral neutralization and protection and increase efficacy. Here, we discuss advances in antibody-guided vaccine design and current antibody-guided strategies, including epitope-based, nanoparticle-based, and scaffold-based vaccine approaches. We review the challenges and limitations of vaccines against different pathogens, such as influenza A virus, HIV-1 virus, single-celled malaria parasite, respiratory syncytial virus, and SARS-CoV-2. We summarize the available literature guidance, including emerging techniques in immunological vaccine design, to help understand and improve antibody-based immunity. The search strategy we applied is a comprehensive literature review of major databases, with specific search terms related to antibody-mediated vaccine design, viral neutralization, and immune protection. We discuss the how future directions for next-generation vaccine platforms and personalized vaccines based on immunogenetics will help improve vaccine design for increased specificity and potency of antibodies that neutralize pathogens, offering more precise and effective immune responses and, therefore, protection.

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APA

Miteva, D., Kokudeva, M., Tomov, L., Batselova, H., & Velikova, T. (2025, September 1). Immunological Strategies for Enhancing Viral Neutralization and Protection in Antibody-Guided Vaccine Design. Biologics. Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/biologics5030021

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