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N-乙酰-D-葡萄糖胺糖基部分在嗜人瘤巴蜗牛血淋巴细胞识别曼氏血吸虫孢囊阶段中的作用。

Participation of N-acetyl-D-glucosamine carbohydrate moieties in the recognition of Schistosoma mansoni sporocysts by haemocytes of Biomphalaria tenagophila.

机构信息

Departamento de Parasitologia, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brasil.

出版信息

Mem Inst Oswaldo Cruz. 2011 Nov;106(7):884-91. doi: 10.1590/s0074-02762011000700015.

Abstract

Lectin-carbohydrate binding may be involved in the recognition of Schistosoma mansoni sporocysts by haemocytes of Biomphalaria; therefore, we tested if this interaction is associated with snail resistance against Schistosoma infection. In vitro data showed that most of the S. mansoni sporocysts cultured with haemocytes from Biomphalaria glabrata BH, a highly susceptible snail strain, had a low number of cells that adhered to their tegument and a low mortality rate. Moreover, the addition of N-acetyl-D-glucosamine (GlcNAc) did not alter this pattern of adherence and mortality. Using haemocytes and haemolymph of Biomphalaria tenagophila Cabo Frio, we observed a high percentage of sporocysts with adherent cells, but complete encapsulation was not detected. Low concentrations of GlcNAc increased haemocyte binding to the sporocysts and mortality, which returned to basal levels with high concentrations of the carbohydrate. In contrast, haemocytes plus haemolymph from B. tenagophila Taim encapsulated cellular adhesion index of level 3 and destroyed over 30% of the S. mansoni sporocysts in culture. Interestingly, the addition of GlcNAc, but not mannose, to the culture medium resulted in the significant inhibition of cellular adhesion to the parasite tegument and the reduction of parasite mortality, suggesting that GlcNAc carbohydrate moieties are important to the recognition of S. mansoni by B. tenagophila Taim.

摘要

凝集素-碳水化合物结合可能参与了曼氏血吸虫孢囊被生物玻利瓦尔氏血沼螺的血细胞识别;因此,我们测试了这种相互作用是否与蜗牛抵抗曼氏血吸虫感染有关。体外数据表明,在玻利瓦尔氏血沼螺 BH 的血细胞中培养的大多数曼氏血吸虫孢囊,BH 是一种高度易感的蜗牛品系,其附着在其表皮上的细胞数量较少,死亡率较低。此外,添加 N-乙酰-D-葡萄糖胺(GlcNAc)并没有改变这种附着和死亡率模式。使用生物玻利瓦尔氏血沼螺 Cabo Frio 的血细胞和血淋巴,我们观察到具有附着细胞的孢囊比例很高,但没有检测到完全包裹。低浓度的 GlcNAc 增加了血细胞与孢囊的结合和死亡率,而高浓度的碳水化合物则使死亡率恢复到基础水平。相比之下,来自 B. tenagophila Taim 的血细胞加血淋巴包裹了 3 级的细胞黏附指数,并在培养物中破坏了超过 30%的曼氏血吸虫孢囊。有趣的是,在培养基中添加 GlcNAc 而不是甘露糖会导致对寄生虫表皮的细胞黏附的显著抑制,并降低寄生虫的死亡率,这表明 GlcNAc 碳水化合物部分对 B. tenagophila Taim 识别曼氏血吸虫很重要。

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