Slaving and release in co-infection control

Parasit Vectors. 2013 May 31:6:157. doi: 10.1186/1756-3305-6-157.

Abstract

Background: Animal and human infection with multiple parasite species is the norm rather than the exception, and empirical studies and animal models have provided evidence for a diverse range of interactions among parasites. We demonstrate how an optimal control strategy should be tailored to the pathogen community and tempered by species-level knowledge of drug sensitivity with use of a simple epidemiological model of gastro-intestinal nematodes.

Methods: We construct a fully mechanistic model of macroparasite co-infection and use it to explore a range of control scenarios involving chemotherapy as well as improvements to sanitation.

Results: Scenarios are presented whereby control not only releases a more resistant parasite from antagonistic interactions, but risks increasing co-infection rates, exacerbating the burden of disease. In contrast, synergisms between species result in their becoming epidemiologically slaved within hosts, presenting a novel opportunity for controlling drug resistant parasites by targeting co-circulating species.

Conclusions: Understanding the effects on control of multi-parasite species interactions, and vice versa, is of increasing urgency in the advent of integrated mass intervention programmes.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Coinfection / drug therapy
  • Coinfection / parasitology*
  • Coinfection / veterinary*
  • Drug Therapy / methods*
  • Humans
  • Models, Theoretical
  • Nematoda / drug effects
  • Nematoda / growth & development*
  • Nematode Infections / drug therapy
  • Nematode Infections / parasitology*
  • Nematode Infections / veterinary*