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Background: The 4 serotypes of dengue virus (DENV1-4) can each cause potentially deadly dengue disease, and are spreading globally from tropical and subtropical areas to more temperate ones. Nepal provides a microcosm of this global phenomenon, having met each of these grim benchmarks. To better understand DENV transmission dynamics and spread into new areas, we chose to study dengue in Nepal and, in so doing, to build the onsite infrastructure needed to manage future, larger studies.
Methods And Results: During the 2022 dengue season, we enrolled 384 patients presenting at a hospital in Kathmandu with dengue-like symptoms; 79% of the study participants had active or recent DENV infection (NS1 antigen and IgM). To identify circulating serotypes, we screened serum from 50 of the NS1 participants by RT-PCR and identified DENV1, 2, and 3 - with DENV1 and 3 codominant. We also performed whole-genome sequencing of DENV, for the first time in Nepal, using our new on-site capacity. Sequencing analysis demonstrated the DENV1 and 3 genomes clustered with sequences reported from India in 2019, and the DENV2 genome clustered with a sequence reported from China in 2018.
Conclusion: These findings highlight DENV's geographic expansion from neighboring countries, identify China and India as the likely origin of the 2022 DENV cases in Nepal, and demonstrate the feasibility of building onsite capacity for more rapid genomic surveillance of circulating DENV. These ongoing efforts promise to protect populations in Nepal and beyond by informing the development and deployment of DENV drugs and vaccines in real time.
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http://dx.doi.org/10.1101/2024.06.02.597008 | DOI Listing |
Biophys J
September 2025
Department of Chemistry and Biochemistry, Alberta RNA Research and Training Institute, University of Lethbridge, 4401 University Drive, Lethbridge, AB, T1K 3M4, Canada; Li Ka Shing Institute of Virology, University of Alberta, Edmonton T6G 2E1, Alberta, Canada; Department of Microbiology, Immunology
The dengue virus (DENV) poses a significant threat to human health, accounting for approximately 400 million infections each year. Its genome features a circular structure that facilitates replication through long-range RNA-RNA interactions, utilizing cyclization sequences located in the untranslated regions (UTRs). To gain new insights into the organization of the DENV genome, we purified the 5' and 3' UTRs of DENV in vitro and examined their structural and binding properties using various biophysical techniques combined with computational methods.
View Article and Find Full Text PDFJ Travel Med
September 2025
Public Health Agency of Sweden, Solna, Sweden.
We describe a Qdenga-induced DENV-2-infection in a Swedish traveler. Comparative sequencing suggests that the vaccine contained a small fraction of identical virus as detected in the patient, suggesting a selection of a DENV-2-substrain with unusual amino acid substitutions. Further research on selection of, and possible effects of, Qdenga-substrain-infections is warranted.
View Article and Find Full Text PDFJ Travel Med
September 2025
Vaccine Trial Centre, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand.
Background: Although there is a rising trend in both dengue cases and immunocompromised conditions, there is limited research on how common severe dengue is in immunocompromised individuals. This data is key for those advising the ever-increasing numbers of immunocompromised travellers.
Methods: We conducted a systematic review and meta-analysis of studies reporting dengue frequency or outcomes in immunocompromised populations.
Int J Infect Dis
September 2025
Division of Infection and Immunity, University College London, London, United Kingdom; NIHR Biomedical Research Centre, UCL Hospitals NHS Foundation Trust, London, NW3 OPQ, United Kingdom. Electronic address:
Int J Infect Dis
September 2025
Service de Médicine et Chirurgie Pédiatrique, Centre Hospitalier de Cayenne, 3 Avenue Alexis Blaise, 97300 Cayenne, Guyane Française; Centre de référence de la drépanocytose, Centre Hospitalier de Cayenne, 3 Avenue Alexis Blaise, 97300 Cayenne, Guyane Française; UFR Santé Hyacinthe BASTARAUD
Patients with sickle cell disease (SCD) infected with dengue virus are at high risk of developing severe complications. However, the optimal management approach for this patient population remains unclear. We report two cases of dengue-associated multiorgan failure in adolescents with hemoglobin SC (HbSC) disease, both of whom recovered following structured symptomatic management.
View Article and Find Full Text PDF