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Understanding chikungunya virus adaptation and transmission dynamics in Cameroon

Grant number: 327485/Z/25/Z

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Key facts

  • Disease

    Chikungunya haemorrhagic fever
  • Start & end year

    2026
    2031
  • Known Financial Commitments (USD)

    $972,579.94
  • Funder

    Wellcome Trust
  • Principal Investigator

    Dr. Fredy Brice Nemg Simo
  • Research Location

    Cameroon
  • Lead Research Institution

    Centre for Research in Infectious Diseases (CRID), Cameroon
  • Research Priority Alignment

    N/A
  • Research Category

    Pathogen: natural history, transmission and diagnostics

  • Research Subcategory

    Diagnostics

  • Special Interest Tags

    N/A

  • Study Type

    Clinical

  • Clinical Trial Details

    Not applicable

  • Broad Policy Alignment

    Pending

  • Age Group

    Unspecified

  • Vulnerable Population

    Unspecified

  • Occupations of Interest

    Unspecified

Abstract

Chikungunya virus (CHIKV) is a significant public health challenge in sub- Saharan Africa, where its transmission dynamics and adaptation mechanisms are poorly understood. This is concerning, given that CHIKV has caused outbreaks across Africa, with the potential for rapid spread and severe health consequences. The virus's capacity for adaptation to different mosquito vectors, notably Aedes albopictus, could substantially alter transmission patterns and expand the geographical range of CHIKV. Climate change also impacts mosquito vector distribution and CHIKV transmission dynamics, thereby necessitating proactive research to understand and mitigate these effects. Limited diagnostic capabilities in resource-constrained settings like Cameroon is another challenge, emphasizing the need for improved detection methods to facilitate timely surveillance and outbreak control. We aim to address this knowledge gap by i-analyzing CHIKV genetic diversity and its prevalence in patients with acute febrile illness, and Aedes mosquitoes in Cameroon, ii- assessing Aedes mosquitoes vector competence and transmission factors (viral, mosquito), and iii-evaluating the diagnostic performance of Reverse Transcriptase Loop-Mediated Isothermal Amplification (RT-LAMP) to detect CHIKV. This study will provide critical knowledge to guide targeted interventions, improve diagnostic tools, and strengthen overall preparedness against future CHIKV outbreaks.