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Clinical, Virological, and Immunological Features in Cosmopolitan Genotype DENV-2–Infected Patients during a Large Dengue Outbreak in Sri Lanka in 2017

登革热 登革热病毒 病毒血症 病毒学 爆发 基因型 生物 免疫学 病毒载量 病毒 医学 基因 生物化学
作者
Khine Mya Nwe,Mya Myat Ngwe Tun,Rohitha Muthugala,Takeshi Nabeshima,Jean Claude Balingit,Lakmali Rajamanthri,Dulani Jayawardana,Shanthi Attanayake,Shingo Inoue,Yuki Takamatsu,Takeshi Urano,Kouichi Morita
出处
期刊:American Journal of Tropical Medicine and Hygiene [American Society of Tropical Medicine and Hygiene]
卷期号:109 (4): 917-925 被引量:3
标识
DOI:10.4269/ajtmh.22-0780
摘要

In 2017, Sri Lanka experienced its largest dengue epidemic and reported severe and unusual presentations of dengue with high morbidity. This outbreak was associated with the reemergence of dengue virus-2 (DENV-2), with the responsible strain identified as a variant of the previously circulating DENV-2 cosmopolitan genotype. In this study, we characterized the DENV-2 cosmopolitan genotype from patients during this epidemic. Also, we identified host factors that contributed to the severity of dengue infection in patients infected with this particular virus. Ninety-one acute serum samples from patients at the National Hospital in Kandy were randomly selected. Of these, 40.2% and 48.9% were positive for dengue IgM and IgG, respectively. NS1 antigen levels were significantly higher in primary infections. The severe dengue (SD) and dengue with warning signs (DWWS) groups exhibited significantly higher viral genome and infectivity titers than the dengue without warning signs (DWoWS) group. The highest viremia level was observed in SD patients. As for host cytokine response, interferon α (IFN-α) levels were significantly higher in the DWoWS group than in the DWWS and SD groups, whereas interleukin (IL)-12p40 and tumor necrosis factor α (TNF-α) levels in SD patients were significantly higher than in the other two groups. The TNF-α, IL-4, and monocyte chemoattractant protein-1 concentrations were positively correlated with NS1 antigen levels. From whole-genome analysis, NS4 had the highest frequency of amino acid variants, followed by the E gene. Our study suggests that viremia levels and immune responses contributed to SD outcomes, and these findings may help in identifying an effective therapeutic strategy against SD infection.

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