Medical Parasitology Department, Faculty of Medicine, Alexandria University, Egypt.
Dev Comp Immunol. 2024 Jan;150:105083. doi: 10.1016/j.dci.2023.105083. Epub 2023 Oct 17.
The complex innate immune defense of Biomphalaria glabrata, the intermediate host of Schistosoma mansoni, governs the successful development of the intramolluscan stages of the parasite. The interaction between the snail and the parasite involves a complex immune molecular crosstalk between several parasite antigens and the snail immune recognition receptors, evoking different signals and effector molecules. This work seeks to discuss the immune-related molecules that influence compatibility in Biomphalaria glabrata/Schistosoma mansoni interaction and the differential expression of these molecules between resistant and susceptible snails. It also includes the current understanding of the immune molecular determinants that govern the compatibility in sympatric and allopatric interactions, and the expression of these molecules after immune priming and the secondary immune response. Herein, the differences in the immune-related molecules in the interaction of other Biomphalaria species with Schistosoma mansoni compared to the Biomphalaria glabrata model snail are highlighted. Understanding the diverse immune molecular determinants in the snail/schistosome interaction can lead to alternative control strategies for schistosomiasis.
布氏嗜碘吸虫中间宿主光滑双脐螺的复杂固有免疫防御机制控制着寄生虫的内部阶段在螺体内的成功发育。螺与寄生虫之间的相互作用涉及到几种寄生虫抗原与螺免疫识别受体之间复杂的免疫分子串扰,从而引发不同的信号和效应分子。这项工作旨在讨论影响布氏嗜碘吸虫/曼氏血吸虫相互作用中相容性的免疫相关分子,以及这些分子在抗性和敏感性螺之间的差异表达。它还包括对控制同域和异域相互作用中相容性的免疫分子决定因素的现有理解,以及免疫引发和二次免疫反应后这些分子的表达。在此,突出了与布氏嗜碘吸虫模型螺相比,其他光滑双脐螺物种与曼氏血吸虫相互作用中免疫相关分子的差异。了解螺/血吸虫相互作用中的不同免疫分子决定因素可以为血吸虫病的替代控制策略提供依据。