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ISSN Approved Journal | | IMPACT FACTOR 8.16 | | eISSN: 2582-5542 | |  Free Crossref DOI 

Fast Publication within 2 days | | Low Article Processing Charges | | Peer Reviewed and Referred Journal

Research and review articles are invited for publication in September 2026 (Volume 27, Issue 3) Submit Paper

Identification of factors influencing the effectiveness of malaria vaccines: A systematic review

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  • Identification of factors influencing the effectiveness of malaria vaccines: A systematic review

Okoro Samuel Chukwu *, Euslar Nnenna Onu, Lovette Onyinye Nomeh, Stella Ajachukwu Uma, Veronica Felicitia Nwode and Bismark Ugwu

Department of Microbiology, Faculty of Biological Sciences, Alex Ekwueme Federal University Ndufu Alike, Ebonyi State, PMB 1010, Nigeria.

Review Article

World Journal of Biology Pharmacy and Health Sciences, 2026, 26(03), 088-096

Article DOI: 10.30574/wjbphs.2026.26.3.0326

DOI url: https://doi.org/10.30574/wjbphs.2026.26.3.0326

Received on 23 April 2026; revised on 03 June 2026; accepted on 06 June 2026

The clinical authorization and deployment of the RTS, S/AS01 and R21/Matrix-M vaccines represent historic milestones in global public health. This systematic review aims to identify, classify, and evaluate the diverse biological, host-specific, environmental, and operational factors that influence the real-world field effectiveness of pre-erythrocytic malaria vaccines. Following PRISMA 2020 guidelines, a systematic literature search was executed across PubMed, Embase, Scopus, and the cochrane library for peer-reviewed studies and programmatic reports tracking malaria vaccine efficacy from January 2015 to April 2026. Data extraction targeted variables driving variations in protection, antibody decay rates, and programmatic dropouts. The synthesis revealed four critical barriers to uniform vaccine effectiveness: Parasite genetics: High genetic polymorphism within the Plasmodium falciparum circumsporozoite protein (Pfcsp) gene enables strain-specific immune evasion, dropping vaccine protection from 50.3% against matching strains down to 33.4% against non-matching field variants. Host Physiological Factors: High baseline maternal anti-CSP antibodies blunt infant B-cell priming in early infancy, while protein-energy malnutrition suppresses clonal expansion and class-switched antibody synthesis, accelerating protective titer decay. Environmental Dynamics: Relentless infectious pressure in ultra-high transmission zones overwhelms vaccine defences, accelerating antibody decay. Malaria vaccine effectiveness is a shifting metric shaped by an intersection of biological and logistical variables. Maximizing population-level survival requires a transition away from rigid, uniform deployment models. Public health strategies must implement agile, region-specific frameworks that combine seasonal vaccination with multivalent antigen formulations, nutritional supplementation, digitized tracking systems, and continuous vector control.

Malaria Vaccines; RTS, S/AS01; R21/Matrix-M; Vaccine Effectiveness; Genetic Polymorphism; Public Health Policy

https://wjbphs.com/sites/default/files/fulltext_pdf/WJBPHS-2026-0326.pdf

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Okoro Samuel Chukwu, Euslar Nnenna Onu, Lovette Onyinye Nomeh, Stella Ajachukwu Uma, Veronica Felicitia Nwode and Bismark Ugwu. Identification of factors influencing the effectiveness of malaria vaccines: A systematic review. World Journal of Biology Pharmacy and Health Sciences, 2026, 26(03), 088-096. Article DOI: https://doi.org/10.30574/wjbphs.2026.26.3.0326

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