4.8 Review

Immune Evasion Strategies of Schistosomes

期刊

FRONTIERS IN IMMUNOLOGY
卷 11, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2020.624178

关键词

schistosome; schistosomiasis; immune evasion; immunomodulation; Biomphalaria glabrata

资金

  1. Natural Sciences and Engineering Council of Canada [2018-05209, 2018-522661]
  2. Alberta Innovates Health Solutions Graduate Studentship

向作者/读者索取更多资源

Human schistosomes have evolved various immune evasion strategies, such as molecular mimicry of host antigens and the utilization of an immune resistant outer tegument, to survive in both snail and human hosts. Understanding these mechanisms is crucial for the development of novel therapeutics and treatment plans.
Human schistosomes combat the unique immune systems of two vastly different hosts during their indirect life cycles. In gastropod molluscs, they face a potent innate immune response composed of variable immune recognition molecules and highly phagocytic hemocytes. In humans, a wide variety of innate and adaptive immune processes exist in proximity to these parasites throughout their lifespan. To survive and thrive as the second most common parasitic disease in humans, schistosomes have evolved many techniques to avoid and combat these targeted host responses. Among these techniques are molecular mimicry of host antigens, the utilization of an immune resistant outer tegument, the secretion of several potent proteases, and targeted release of specific immunomodulatory factors affecting immune cell functions. This review seeks to describe these key immune evasion mechanisms, among others, which schistosomes use to survive in both of their hosts. After diving into foundational observational studies of the processes mediating the establishment of schistosome infections, more recent transcriptomic and proteomic studies revealing crucial components of the host/parasite molecular interface are discussed. In order to combat this debilitating and lethal disease, a comprehensive understanding of schistosome immune evasion strategies is necessary for the development of novel therapeutics and treatment plans, necessitating the discussion of the numerous ways in which these parasitic flatworms overcome the immune responses of both hosts.

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