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Trichomonas vaginalis Lipophosphoglycan Triggers a Selective Upregulation of Cytokines by Human Female Reproductive Tract Epithelial Cells

机译:阴道毛滴虫脂磷酸聚糖触发人类女性生殖道上皮细胞选择性上调细胞因子

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摘要

Trichomonas vaginalis is one of the most common nonviral sexually transmitted human infections and, worldwide, has been linked to increased incidence of human immunodeficiency virus type 1 transmission, preterm delivery, low birth weight, cervical cancer, and vaginitis. The molecular pathways that are important in initiating host inflammatory and immune responses to T. vaginalis are poorly understood. Here we report interactions of human cervicovaginal epithelial cells with the most abundant cell surface glycoconjugate of the parasite, the T. vaginalis lipophosphoglycan (LPG). Purified LPG mediated the adhesion of parasites to human vaginal epithelial cells in a dose-dependent manner. Furthermore, T. vaginalis LPG (but not LPG from Tritrichomonas foetus, the causative agent of bovine trichomoniasis) induced a selective upregulation of chemotactic cytokines by human endocervical, ectocervical, and vaginal epithelial cells, which do not express Toll-like receptor 4/MD2. The T. vaginalis LPG triggered interleukin 8 (IL-8), which promotes the adhesion and transmigration of neutrophils across the endothelium, and macrophage inflammatory protein 3α, which is a chemoattractant for immune cells and is essential for dendritic cell maturation. These effects were dose dependent and sustained in the absence of cytotoxicity and IL-1β release and utilized, at least in part, a signaling pathway independent from the Toll-like/IL-1 receptor adaptor protein MyD88.
机译:阴道毛滴虫是最常见的非病毒性传播人类感染之一,在世界范围内,与人类免疫缺陷病毒1型传播,早产,低出生体重,宫颈癌和阴道炎的发病率增加有关。对启动宿主对阴道毛滴虫的炎症和免疫反应很重要的分子途径知之甚少。在这里,我们报告人类宫颈阴道上皮细胞与寄生虫,阴道锥虫脂蛋白聚糖(LPG)的细胞表面糖缀合物最丰富的相互作用。纯化的LPG以剂量依赖的方式介导寄生虫对人阴道上皮细胞的粘附。此外,阴道锥虫LPG(但不是滴虫Tritrichomonas foetus的LPG,牛滴虫病的病原体)诱导人宫颈,宫颈,宫颈和阴道上皮细胞选择性上调趋化性细胞因子,这些细胞不表达Toll样受体4 / MD2。 。阴道锥虫LPG触发白介素8(IL-8),该蛋白促进嗜中性粒细胞穿过内皮的粘附和转运,以及巨噬细胞炎症蛋白3α,它是免疫细胞的化学吸引剂,对于树突状细胞的成熟至关重要。这些作用是剂量依赖性的,并且在没有细胞毒性和IL-1β释放的情况下持续存在,并且至少部分利用了独立于Toll样/ IL-1受体衔接子蛋白MyD88的信号传导途径。

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