Unraveling the epidemiological and dispersal dynamics of the 2024–2025 chikungunya virus epidemic on Réunion Island

Réunion Island experienced a massive chikungunya virus epidemic in 2024–2025, with >54,000 confirmed cases. This is the second major chikungunya epidemic on the island, following the first one that peaked 20 years ago. It has been asserted that this new outbreak finds its origin in a single introduction event into the island, offering an opportunity to exploit viral genomic data to understand the epidemiological and dispersal dynamics of the introduced transmission chain. We sequenced >3,000 viral genomes collected during the epidemic. Harnessing this genomic dataset, we used several phylogeographic and phylodynamic approaches to unravel the paths taken by the transmission chain and the external factors that might have impacted its dispersal and epidemiological dynamics on the island. Our analyses highlight a dispersal pattern in line with a gravity-model dynamic with viral transition events being more frequent from and toward more populated areas. Our analyses reveal that the transmission chain was overall spatially intermixed, with frequent exchanges among residential areas. In addition, we show that the temporal dynamic and intensity of the epidemic were associated with climatic variables, namely temperature and precipitation. Our results also show that in theory, the population immunity—resulting from this epidemic and the previous one (2005–2006)—could be sufficient to explain on its own the decrease in the transmission rate that led to the end of the epidemic. While a short-term resurgence cannot be excluded, the risk of a large-scale circulation of the virus in the human population appears therefore relatively limited in the upcoming seasons.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-09-16
DOI
https://doi.org/10.1073/pnas.2621019123
Primary Topic
Mosquito-borne diseases and control
Type
article
Field-Weighted Citation Impact
0.00
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article

Unraveling the epidemiological and dispersal dynamics of the 2024–2025 chikungunya virus epidemic on Réunion Island

Mandev S. Gill, Muriel Vincent, Philippe Lemey, Marc A. Suchard et al.
Proceedings of the National Academy of Sciences
Mosquito-borne diseases and control
article

Unraveling the epidemiological and dispersal dynamics of the 2024–2025 chikungunya virus epidemic on Réunion Island

Mandev S. Gill, Muriel Vincent, Philippe Lemey, Marc A. Suchard, Étienne Frumence, Simon Dellicour, Raphaëlle Klitting, Yucai Shao, Kyla Serres, Xavier de Lamballerie, Marie-Christine Jaffar-Bandjee, Filippo Monti
article en

Abstract

Réunion Island experienced a massive chikungunya virus epidemic in 2024–2025, with >54,000 confirmed cases. This is the second major chikungunya epidemic on the island, following the first one that peaked 20 years ago. It has been asserted that this new outbreak finds its origin in a single introduction event into the island, offering an opportunity to exploit viral genomic data to understand the epidemiological and dispersal dynamics of the introduced transmission chain. We sequenced >3,000 viral genomes collected during the epidemic. Harnessing this genomic dataset, we used several phylogeographic and phylodynamic approaches to unravel the paths taken by the transmission chain and the external factors that might have impacted its dispersal and epidemiological dynamics on the island. Our analyses highlight a dispersal pattern in line with a gravity-model dynamic with viral transition events being more frequent from and toward more populated areas. Our analyses reveal that the transmission chain was overall spatially intermixed, with frequent exchanges among residential areas. In addition, we show that the temporal dynamic and intensity of the epidemic were associated with climatic variables, namely temperature and precipitation. Our results also show that in theory, the population immunity—resulting from this epidemic and the previous one (2005–2006)—could be sufficient to explain on its own the decrease in the transmission rate that led to the end of the epidemic. While a short-term resurgence cannot be excluded, the risk of a large-scale circulation of the virus in the human population appears therefore relatively limited in the upcoming seasons.

Proceedings of the National Academy of SciencesVol. 123(38)
Université Libre de Bruxelles (BE), Vrije Universiteit Brussel (BE), University of Georgia (US), Rega Institute for Medical Research (BE), Assistance Publique Hôpitaux de Marseille (FR), Centre Hospitalier Universitaire de La Réunion (RE), Santé Publique France (FR), Laboratoire National de Référence (MA), Institut de Médecine Tropicale du Service de Santé des Armées (FR), Institute of Bioinformatics (IN), Fielding Graduate University (US)
Good health and well-being
Openalex Percentile: Top 8%
Mosquito-borne diseases and control
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