Active Infection & Immunity Pregnancy, Children & Inherited Conditions

Profiling the clinico-epidemiological, genomic, and immunological markers of dengue and Zika infections and co-infections in Kerala, India via longitudinal studies

In plain English

AI plain-English summary

Over 17,000 people in Kerala who show up at clinics with suspected dengue or Zika will be swabbed, bled, and tracked for five years to map how the two viruses spread and interact. Dengue and Zika co-circulate in Kerala, but no one knows how often people get both, whether one infection changes the severity of the other, or how the viruses move through communities. This study fills that gap by following patients from symptom onset, testing their household contacts, and monitoring pregnant women and their infants for congenital effects. Researchers will also sequence viral genomes and measure immune responses—antibodies and T cells—in people with single infections, co-infections, and sequential infections. If the work succeeds, it will produce a detailed picture of transmission dynamics and immune profiles that can sharpen diagnostic criteria, hospital triage protocols, and public health responses. The genomic database could also inform future vaccine and immunotherapy design. This is applied epidemiology with a direct line to clinical and policy decisions in a high-burden region.

View original technical description
Dengue and Zika are major health threats in Kerala, with co-circulation of both viruses complicating the region's health landscape. This five-year longitudinal study, in partnership with the Kerala health system, aims to evaluate the burden, and distribution of ZIKV and DENV infections. The study will recruit >17000 probable dengue or zika patients within five days of symptom onset from healthcare facilities of all levels. Patients will be screened for infections and antibody status to determine primary or secondary infections. Active surveillance of contacts in geographical clusters will be conducted. Additionally, an antenatal cohort will be recruited and monitored for these infections. They will undergo serology testing post-delivery to assess new infections and infants will be followed for congenital anomalies in positive cases. Immune responses in asymptomatic and symptomatic individuals will be analyzed, focusing on antibody and T cell responses in mono- infections, co-infections, and sequential infections. Vectors will be examined for infection rates. A database of genomic heterogeneity will be established through next-generation sequencing to correlate with disease outcomes. The study aims to understand transmission dynamics and significant genomic and immunological readouts will help sharpen our responses to diagnostic, prognostic and management policies and potentially guiding future immunotherapeutic and vaccine developments.

View the original record at the funder ↗

Researchers

Amit Sharma (EPMC Awardee)Anmol Chandele (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Immunology, molecular biology and control of flaviviruses (Dengue and Zika)
Using Mathematical Models to Explore the Co-infection Dynamics Between Dengue, Chikungunya, Zika and Malaria
UK-Indonesian Consortium to Identify Biomarkers Predictive of Dengue Disease Severity.
Spatiotemporal dynamics of arbovirus transmission: implications for disease control and elimination
Transmission dynamics and molecular epidemiology of arboviruses in Indonesia

Original classification

Understanding dengue and Zika spread, immunity and clinical outcomes

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.