Estimating the prevalence and intensity of Schistosoma mansoni infection among rural communities in Western Tanzania: The influence of sampling strategy and statistical approach

PLoS Negl Trop Dis. 2017 Sep 21;11(9):e0005937. doi: 10.1371/journal.pntd.0005937. eCollection 2017 Sep.

Abstract

Background: Schistosoma mansoni is a parasite of major public health importance in developing countries, where it causes a neglected tropical disease known as intestinal schistosomiasis. However, the distribution of the parasite within many endemic regions is currently unknown, which hinders effective control. The purpose of this study was to characterize the prevalence and intensity of infection of S. mansoni in a remote area of western Tanzania.

Methodology/principal findings: Stool samples were collected from 192 children and 147 adults residing in Gombe National Park and four nearby villages. Children were actively sampled in local schools, and adults were sampled passively by voluntary presentation at the local health clinics. The two datasets were therefore analysed separately. Faecal worm egg count (FWEC) data were analysed using negative binomial and zero-inflated negative binomial (ZINB) models with explanatory variables of site, sex, and age. The ZINB models indicated that a substantial proportion of the observed zero FWEC reflected a failure to detect eggs in truly infected individuals, meaning that the estimated true prevalence was much higher than the apparent prevalence as calculated based on the simple proportion of non-zero FWEC. For the passively sampled data from adults, the data were consistent with close to 100% true prevalence of infection. Both the prevalence and intensity of infection differed significantly between sites, but there were no significant associations with sex or age.

Conclusions/significance: Overall, our data suggest a more widespread distribution of S. mansoni in this part of Tanzania than was previously thought. The apparent prevalence estimates substantially under-estimated the true prevalence as determined by the ZINB models, and the two types of sampling strategies also resulted in differing conclusions regarding prevalence of infection. We therefore recommend that future surveillance programmes designed to assess risk factors should use active sampling whenever possible, in order to avoid the self-selection bias associated with passive sampling.

MeSH terms

  • Biostatistics / methods*
  • Feces / parasitology
  • Humans
  • Parasite Egg Count
  • Prevalence
  • Rural Population
  • Schistosomiasis mansoni / epidemiology*
  • Schistosomiasis mansoni / pathology*
  • Selection Bias
  • Tanzania / epidemiology

Grants and funding

JSB's salary and tuition fees were supported by an endowment, awarded as a PhD scholarship by the Glasgow Centre for International Development (2009-2012). There was a limited budget for consumables and travel so some of the initial costs were paid by a Natural Environment Research Council Advanced Research Fellowship to BKM (NE/B50094X/1) that ended in 2009. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.