Emergence of W135 meningococcal meningitis in Ghana

Abudulai Adams Forgor1, Julia Leimkugel, Abraham Hodgson

  • 1Navrongo Health Research Centre, Ministry of Health, Navrongo, Ghana.

Insights

Neisseria meningitidis serogroup W135 caused meningitis outbreaks in Burkina Faso, with limited spread to Ghana. W135 strains were antibiotic-sensitive, but colonization persisted, indicating rapid bacterial evolution.

Area of Science:

  • Epidemiology
  • Microbiology
  • Infectious Diseases

Background:

  • Neisseria meningitidis serogroup W135 (MenW135) has emerged as a significant cause of meningitis outbreaks.
  • Previous W135 epidemics in Burkina Faso (2002-2004) had limited documented spread to neighboring Ghana.

Purpose of the Study:

  • To investigate the epidemiology and genetic characteristics of Neisseria meningitidis serogroup W135 isolates in Ghana.
  • To assess meningococcal colonization rates and persistence in communities affected by W135 meningitis cases.

Main Methods:

  • Case investigation of W135 meningitis patients in Ghana.
  • Antimicrobial susceptibility testing and multi-locus sequence typing (MLST) of isolates.
  • Pulsed-field gel electrophoresis (PFGE) for genetic fingerprinting.
  • Meningococcal colonization surveys in affected communities.

Main Results:

  • Four cases of W135 meningitis were identified in Ghana, with one fatality and one case of severe neurosensory hearing loss.
  • All isolates were sensitive to common antibiotics and belonged to multi-locus sequence type 11 (ST-11) within the ET-37 clonal complex.
  • PFGE profiles of Ghanaian isolates were similar to those from Burkina Faso epidemics.
  • W135 carriage rates varied (0-17.5%), with evidence of persistent colonization over one year in one community.
  • Microevolutionary changes were observed in W135 isolates within a single community.

Conclusions:

  • The limited spread of W135 meningitis from Burkina Faso to Ghana highlights potential bottlenecks in epidemic Neisseria meningitidis clone dissemination.
  • Persistent W135 colonization and evidence of rapid microevolution underscore the need for advanced typing methods to track clonal relationships.

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