PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 14, 2026Journal of Tropical Medicine0 citationsOpen Access

Polyparasitism and Anaemia Among Women of Reproductive Age in Kilifi County—Kenya

View Full Paper
MMMatano MjombaSMSimon MuriuVJVictor Tunje Jeza

Key Points

  • This study aims to evaluate the link between polyparasitic infections and anaemia among women of reproductive age in Kilifi.
  • Cross-sectional design conducted among 478 women of reproductive age in Kilifi County.
  • Blood samples analyzed for Plasmodium falciparum and haemoglobin classification.
  • Urine and stool samples tested for Schistosoma haematobium and soil-transmitted helminths.
  • Data analyzed using R software with chi-square and t-test for statistical significance.
  • Overall prevalence of parasitic infections was 26.9%.
  • Polyparasitism prevalence was low at 1.8%, mainly due to infections by P. falciparum and S. haematobium.
  • Anaemia prevalence was 16.5%, with 63% normocytic and 37% microcytic cases.
  • No noted synergy between different parasites affecting haemoglobin levels.

Abstract

Background Polyparasitism is commonly associated with Plasmodium species , Schistosoma species and soil‐transmitted helminths. Anaemia results from a variety of causes, including parasitic infections. Women of reproductive age (WRA) and children below the age of five are disproportionately affected by polyparasitic infections, putting them at risk of anaemia. The current study was conducted to evaluate the association of polyparasitic infections with anaemia among WRA in Kilifi. Materials and Methods A cross‐sectional study was conducted among 478 WRA in Rabai and Magarini subcounties in Kilifi County. Blood samples were collected and analysed for Plasmodium falciparum , determination of haemoglobin (HB), and classification of anaemia, while urine and stool samples were tested for Schistosoma haematobium and soil‐transmitted helminths, respectively. Data were analysed using R software, and the overall magnitude of parasitic coinfections, anaemia and their associated factors was determined by chi‐square and t‐test. The differences were considered statistically significant if p ‐value was ≤ 0.05. The means of HB were determined to evaluate the synergistic effect of different single parasites in polyparasitism on HB at a 95% confidence interval. Results The overall prevalence of parasitic infections was 26.9%. Polyparasitism had a prevalence of 1.8% due to concurrent infection of P. falciparum and S. haematobium, S. haematobium and hookworm, S. haematobium, hookworm and Ascaris lumbricoides, whose prevalence was 0.8% ( p < 0.001). 0.8% ( p < 0.001) and 0.2% ( p < 0.001) respec tively. The prevalence of anaemia was 16.5%, while the prevalence of normocytic and microcytic anaemia was 63% and 37%, respectively. There was no synergy between different parasites in polyparasitism and HB. Conclusion The study findings indicated that the prevalence of polyparasitism was low. Polyparasitic infections involving S. haematobium and P. falciparum were most common in the region. Anaemia was common among P. falciparum and Trichuris trichiura- infected participants, while normocytic and microcytic anaemia were common in both infected and noninfected women.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Mjomba et al. (2026) studied this question.

synapsesocial.com/papers/699011812ccff479cfe5831chttps://doi.org/10.1155/jotm/2791451
Ask AI
Helpful
Bookmark
Share
View Full Paper