Early detection of SARS-CoV-2 variants using genomic surveillance: insights from aircraft wastewater and nasal swabs at Kigali International Airport, Rwanda.

利用基因组监测早期检测 SARS-CoV-2 变异株:来自卢旺达基加利国际机场飞机废水和鼻拭子的见解

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作者:Gashegu Misbah, Muvunyi Raissa, Musabyimana Jean Pierre, Umumararungu Esperance, Irankunda Laetitia, Mutezemariya Chantal, Uwituze Arlene, Gahima Nelson, Rwabuhihi John, Mugisha Jean Claude, Ahmed Ayman, Gahamanyi Noel, Mutesa Leon, Prator Cecilia A, Landis Elizabeth A, Philipson Casandra W, Carnegie Nicole Bohme, Tuyishime Albert, Mukagatare Isabelle, Bigirimana Noella, Muvunyi Claude Mambo
OBJECTIVES: The growing threat of emerging infectious diseases necessitates proactive genomic surveillance, particularly, in regions with limited resources and low levels of existing reporting. This study highlights the implementation of a comprehensive genomic surveillance program at the Kigali International Airport and explores the utility of a dual-sample strategy leveraging environmental aircraft wastewater and pooled nasal swab sample types for comprehensive detection and characterization of SARS-CoV-2 lineages being imported into Rwanda. METHODS: Using a combined pooled nasal swab and aircraft wastewater sampling approach resulted in complementary insights in terms of geographic coverage, positivity, and variant characterization. RESULTS: Mutational profiling in source pooled nasal swabs and aircraft wastewater sample data revealed dynamic shifts in mutation prevalence that corresponded with global patterns. Emerging variant JN.1 was detected early in nasal swab data, demonstrating the power of using genomic surveillance as an early warning system. CONCLUSIONS: These results support the feasibility of pathogen surveillance in high-traffic settings and may help drive interest in expanding programs to include pathogens beyond SARS-CoV-2.

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