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首页> 外文期刊>Parasitology Research >Investigation of defense response and immune priming in Biomphalaria glabrata and Biomphalaria straminea, two species with different susceptibility to Schistosoma mansoni
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Investigation of defense response and immune priming in Biomphalaria glabrata and Biomphalaria straminea, two species with different susceptibility to Schistosoma mansoni

机译:生物骨盆菌和生物骨盆血栓土和生物骨盆中防治初探的调查,两种不同易感性血吸虫曼逊

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摘要

For many years, the immune response of invertebrates was considered to lack any mechanism of memory. However, the study of their response has shown a kind of acquired immunity, which is not so well understood given the lack of knowledge of the invertebrate defense system. This event can be called "innate immune memory." Recent studies using Biomphalaria glabrata snails have reported this phenomenon, relating it to an increase in humoral products, but no focus was given to hemocyte response or to other species of snails. In this study, we focus on hemocyte dynamics and some humoral factors in the species B. glabrata and B. straminea, the most widespread species in Brazil, sensitized and non-sensitized to the Schistosoma mansoni worm. We report a change in the prevalent hemocyte type after sensitization, through an increase in the proportion of granulocytes, as well as a change in the total number of hemocytes caused by a second exposure to the parasite. We also showed that melanization is not a key factor in Biomphalaria snail defense and varies little after the second exposure event. The data reported in this article confirm the effect of immune priming on these snails and suggest that the increase of humoral products shown in the literature is accompanied by variation in hemocytes after sensitization.
机译:多年来,无脊椎动物的免疫应答被认为是缺乏任何记忆机制。然而,鉴于缺乏无脊椎动物防御系统的知识缺乏了解,对其反应的研究表明了一种获得的免疫力。这个事件可以称为“先天免疫记忆”。最近使用BioMphalararia Glabrata蜗牛的研究报告了这种现象,将其与体液产品的增加有关,但没有给予血液细胞应答或其他物种的重点。在这项研究中,我们专注于血液细胞动力学和物种B.Glabrata和B. Straminea的一些体液因子,巴西最普遍的物种,对血吸虫曼逊蠕虫的敏感和非敏感。通过增加粒细胞的比例,通过增加粒细胞的比例,以及由第二次暴露于寄生虫引起的血细胞总数的变化,报告普遍血细胞类型的变化。我们还表明,黑色化不是生物骨盆蜗牛防御的关键因素,并且在第二次曝光事件之后几乎不变。本文报告的数据证实了免疫引发对这些蜗牛的影响,并表明文献中所示的体液产品的增加伴随着敏化后血细胞的变化。

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