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Measurement of binding antibodies to SARS-CoV-2 variants elicited by natural infection and COVID-19 vaccines in a sub-Saharan African population

Eddy Kinganda Lusamaki, Ana M. Ortega-Villa, Daouda Camara, Mory Cherif Haidara, Julie Blie, Nadie Coulibaly, Robin L. Dewar, Kade Kallon, Tauseef Rehman, Irini Sereti, Mary Smolskis, Moses Mannah, Renee Ridzon, Sow Fanta, Moussa Sidibe, Nella Bisento, Leonid Serebryannyy, Sandeep Narpala, Olivier Tshiani-Mbaya, Kathryn Shaw-Saliba, Dean Follmann, Sally Hunsberger

Scientific Reports · 2026

Vollständiger Abstract

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Abstract Data on immune responses to COVID-19 vaccination in West and Central Africa remain limited, particularly across SARS-CoV-2 variants and vaccine platforms. Using the InVITE cohort in the Democratic Republic of Congo, Guinea, Liberia, and Mali, we evaluated anti-spike (anti-S) antibody binding to nine SARS-CoV-2 variants in 96 participants equally selected from pre-vaccination assay defined seropositive and seronegative groups. Participants received mRNA, adenovirus-vectored, or inactivated virus vaccines. Anti-S binding was measured before vaccination and two months after completion of the primary series using a Meso Scale Discovery 10-plex assay. Before vaccination, antibody binding was significantly higher against pre-Omicron variants (Ancestral, Alpha, Beta, and Delta) than Omicron variants in both seronegative (fold change [FC] 3.85, 99% CI 3.45–4.17) and seropositive (FC 3.57, 99% CI 3.33–3.84) participants. Seropositive individuals showed greater binding than seronegative individuals across all variants. Two months post-vaccination, mRNA vaccines elicited higher antibody binding than adenovirus-vectored or inactivated vaccines, whereas no significant differences were observed between adenovirus-vectored and inactivated vaccines. Antibody binding remained higher against pre-Omicron than Omicron variants across all vaccine platforms and serostatus groups. These findings provide rare data on variant-specific vaccine-elicited antibody binding responses in West and Central African populations with distinct demographic, epidemiologic, and immunologic background. Trial registration: Registration ClinicalTrials.gov: NCT05096091, Registration date: 10-26-2021, Clinical trial registry: https://clinicaltrials.gov/study/NCT05096091?term=NCT05096091rank=1#study-overview .

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Autor:innen
Eddy Kinganda Lusamaki, Ana M. Ortega-Villa, Daouda Camara, Mory Cherif Haidara, Julie Blie, Nadie Coulibaly, Robin L. Dewar, Kade Kallon, Tauseef Rehman, Irini Sereti, Mary Smolskis, Moses Mannah, Renee Ridzon, Sow Fanta, Moussa Sidibe, Nella Bisento, Leonid Serebryannyy, Sandeep Narpala, Olivier Tshiani-Mbaya, Kathryn Shaw-Saliba, Dean Follmann, Sally Hunsberger
Quelle
Scientific Reports
Publikation
2026-01-01
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ISSN / ISBN
2045-2322
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Eddy Kinganda Lusamaki, Ana M. Ortega-Villa, Daouda Camara, Mory Cherif Haidara, Julie Blie, Nadie Coulibaly, Robin L. Dewar, Kade Kallon, Tauseef Rehman, Irini Sereti, Mary Smolskis, Moses Mannah, Renee Ridzon, Sow Fanta, Moussa Sidibe, Nella Bisento, Leonid Serebryannyy, Sandeep Narpala, Olivier Tshiani-Mbaya, Kathryn Shaw-Saliba, Dean Follmann, Sally Hunsberger (2026). Measurement of binding antibodies to SARS-CoV-2 variants elicited by natural infection and COVID-19 vaccines in a sub-Saharan African population. Scientific Reports. https://doi.org/10.1038/s41598-026-69510-6
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