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Molecular and seroepidemiology of Sars-CoV-2 among influenza-like illness and severe Acute respiratory illness cases in selected health facilities in Ethiopia

Bibliographic Data

ID22066956
AuthorsAdamu Tayachew (0000-0001-6338-9824, Ethiopian Public Health Institute, corresponding author), Dawit Assefa Arimide (0000-0001-9702-0216, Lund University, corresponding author), Wolde Shure (Ethiopian Public Health Institute), Dejenie Shiferaw Teklu (0000-0002-6969-2768, Ethiopian Public Health Institute), Ayele Gebeyehu (Ethiopian Public Health Institute), Tsegaye Berkesa (Ethiopian Public Health Institute), Gizaw Teka (Ethiopian Public Health Institute), Mandefro Kebede (Ethiopian Public Health Institute), Mesfin Wossen (0000-0002-1689-5801, Ethiopian Public Health Institute), Melkamu Abte (Ethiopian Public Health Institute), Mesay Hailu (Ethiopian Public Health Institute), Zelalem Mekuria (The Ohio State University), Nega Berhe (0000-0002-4969-2357, Addis Ababa University), Patrik Medstrand (0000-0003-4259-8744, Lund University), Nigatu Kebede (0000-0002-2580-1408, Addis Ababa University)
Year2026
Volume13
Pages1714899-1714899
Publication date2026-01-26
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueFrontiers in Public Health (JOURNAL)
Journal identifiersISSN: 2296-2565 • E-ISSN: 2296-2565
PublisherFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fpubh.2025.1714899
PMID41668864
OpenAlexW7125710931
LanguageEN
References cited36

Background SARS-CoV-2 remains globally circulating, yet post-pandemic comprehensive molecular, serological, and population-level immunity data from low-resource settings such as Ethiopia are limited. This study employed genomic surveillance with seroepidemiological assessment to characterize the epidemiology of SARS-CoV-2 among individuals presenting with influenza-like illness (ILI) and severe acute respiratory infection (SARI) between May 2023 and April 2024 across 21 influenza sentinel surveillance sites representing diverse regions of Ethiopia. Methods Respiratory swabs from 8,881 ILI/SARI patients were tested for SARS-CoV-2 by real-time polymerase chain reaction (RT-PCR). Whole-genome sequencing was performed on samples with cycle threshold (Ct) values ≤ 30 using Oxford Nanopore Technology, and serological testing was performed on blood samples collected from participants aged ≥12 years using the WANTAI enzyme-linked immunosorbent assay (ELISA) targeting the spike receptor-binding domain (RBD). Results Among 8,881 participants, the overall SARS-CoV-2 detection rate was 3.3 (95% CI: 2.9–3.6). Compared to children under 2 years, older age groups had significantly higher odds of infection: 15–49 years (AOR: 1.60; 95% CI: 1.16–2.21), 50–64 years (AOR: 2.15; 95% CI: 1.31–3.54), and ≥65 years (AOR: 2.37; 95% CI: 1.42–3.95). ILI cases demonstrated higher positivity than SARI cases (AOR: 2.26; 95% CI: 1.75–2.91). SARS-CoV-2 was detected across all seasons, with positivity rates ranging from 1.9% in spring to 6.0% in summer. Whole-genome sequencing of ( n = 80) revealed exclusive circulation of Omicron lineages, identifying 19 Omicron sub-lineages, predominantly JN.1.18 (31.3%), JN.1 (8.8%), XBB.1.28 (8.8%), BA.2.86 (7.5%), and XBB.1.34.1 (6.3%). Serological analysis of 690 samples demonstrated 96.8% (95% CI: 95.2–98.0%) seropositivity, with no significant demographic variation. Conclusions This study demonstrates the continued circulation of SARS-CoV-2 in Ethiopia, primarily among adults with influenza-like illness, with distinct seasonal peaks during the summer. The Omicron variant remained dominant, with JN.1 and its descendants prevailing since late 2023 in parallel with a national rise in COVID-19 cases. These findings reinforce that ongoing genomic and syndromic surveillance utilizing established ILI/SARI platforms remain vital for monitoring viral evolution and guiding targeted public health interventions in low-resource settings

Acute illness · Psychological intervention · Public health · Public health interventions · Public health surveillance · Respiratory illness · Influenza Virus Research Studies · Respiratory viral infections research · SARS-CoV-2 and COVID-19 Research · Epidemiology

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Citation velocityhistorical
Highly citedNo
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