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Schistosoma mansoni in Susceptible and Resistant Snail Strains Biomphalaria tenagophila: In Vivo Tissue Response and In Vitro Hemocyte Interactions

机译:曼氏血吸虫易感和抗性菌株蜗牛贝罗tenagophila:体内组织反应和体外血细胞的相互作用

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摘要

Schistosomiasis is a parasitic disease that is highly prevalent, especially in developing countries. Biomphalaria tenagophila is an important invertebrate host of Schistosoma mansoni in Brazil, with some strains (e.g. Cabo Frio) being highly susceptible to the parasite, whereas others (e.g. Taim) are completely resistant to infection. Therefore, B. tenagophila is an important research model for studying immune defense mechanisms against S. mansoni. The internal defense system (IDS) of the snail comprises hemocytes and hemolymph factors acting together to recognize self from non-self molecular patterns to eliminate the threat of infection. We performed experiments to understand the cellular defenses related to the resistance and/or susceptibility of B. tenagophila to S. mansoni. During the early stages of infection, fibrous host cells of both snail strains were arranged as a thin layer surrounding the sporocysts. However, at later stages of infection, the cellular reactions in resistant snails were increasingly more intense, with thicker layers surrounding the parasites, in contrast to susceptible strains. All parasites were damaged or destroyed inside resistant snails after 10 h of infection. By contrast, parasites inside susceptible snails appeared to be morphologically healthy. We also performed experiments using isolated hemocytes from the two strains interacting with sporocysts. Hemocyte attachment started as early as 1 h after initial infection in both strains, but the killing of sporocysts was exclusive to hemocytes from the resistant strain and was time course dependent. The resistant strain was able to kill all sporocysts. In conclusion, our study revealed important aspects of the initial process of infection related to immune defense responses of strains of B. tenagophila that were resistant to S. mansoni compared with strains that were susceptible. Such information is relevant for the survival or death of the parasites and so is important in the development of control measures against this parasite.
机译:血吸虫病是一种高度流行的寄生虫病,尤其是在发展中国家。 Tenmphophila菌(Biomphalaria tenagophila)是巴西曼氏血吸虫的重要无脊椎动物宿主,有些菌株(例如Cabo Frio)对寄生虫高度敏感,而另一些菌株(例如Taim)则完全抵抗感染。因此,藤蔓芽孢杆菌是研究曼氏沙门氏菌免疫防御机制的重要研究模型。蜗牛的内部防御系统(IDS)包含血细胞和血淋巴因子,这些因子共同作用以从非自身分子模式识别自身,从而消除感染的威胁。我们进行了实验,以了解与Tenagophila对曼氏沙门氏菌的抗性和/或敏感性有关的细胞防御。在感染的早期,两种蜗牛菌株的纤维宿主细胞排列成围绕孢子囊的薄层。然而,在感染的后期,与易感菌株相比,抗性蜗牛中的细胞反应越来越强烈,寄生虫周围有较厚的层。感染10 h后,所有抗性蜗牛体内的寄生虫均受到破坏或破坏。相比之下,易感蜗牛内部的寄生虫似乎在形态上健康。我们还使用来自与孢子囊相互作用的两个菌株的分离的血细胞进行了实验。在这两个菌株中,血细胞的附着最早都在最初感染后1小时开始,但是孢子囊的杀死是抗性菌株中的血细胞所独有的,并且是随时间变化的。抗性菌株能够杀死所有孢子囊。总而言之,我们的研究揭示了感染初期过程的重要方面,与易感曼氏梭状芽胞杆菌相比,对曼氏沙门氏菌有抗性的嗜血博德特氏菌菌株的免疫防御反应有关。此类信息与寄生虫的存活或死亡相关,因此在制定针对该寄生虫的控制措施中非常重要。

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