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首页> 外文期刊>Frontiers in Microbiology >Members of the Candida parapsilosis Complex and Candida albicans are Differentially Recognized by Human Peripheral Blood Mononuclear Cells
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Members of the Candida parapsilosis Complex and Candida albicans are Differentially Recognized by Human Peripheral Blood Mononuclear Cells

机译:人外周血单个核细胞对 parapsilosis 复合体和 Candida albicans 成员的区别识别

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The systemic infections caused by members of the Candida parapsilosis complex are currently associated to high morbility and mortality rates, and are considered as relevant as those caused by Candida albicans. Since the fungal cell wall is the first point of contact with the host cells, here we performed a comparison of this organelle in members of the C. parapsilosis complex, and its relevance during interaction with human peripheral blood mononuclear cells (PBMCs). We found that the wall of the C. parapsilosis complex members is similar in composition, but differs to that from C. albicans , with less mannan content and more β-glucan and porosity levels. Furthermore, lectin-based analysis showed increased chitin and β1,3-glucan exposure at the surface of C. parapsilosis sensu lato when compared to C. albicans . Yeast cells of members of the C. parapsilosis complex stimulated more cytokine production by human PBMCs than C. albicans cells; and this significantly changed upon removal of O -linked mannans, indicating this wall component plays a significant role in cytokine stimulation by C. parapsilosis sensu lato . When inner wall components were exposed on the wall surface, C. parapsilosis sensu stricto and C. metapsilosis , but not C. orthopsilosis , stimulated higher cytokine production. Moreover, we found a strong dependency on β1,3-glucan recognition for the members of the C. parapsilosis complex, but not for live C. albicans cells; whereas TLR4 was required for TNFα production by the three members of the complex, and stimulation of IL-6 by C. orthopsilosis . Mannose receptor had a significant role during TNFα and IL-1β stimulation by members of the complex. Finally, we demonstrated that purified N - and O -mannans from either C. parapsilosis sensu lato or C. albicans are capable to block the recognition of these pathogens by human PBMCs. Together; our results suggest that the innate immune recognition of the members of the C. parapsilosis complex is differential of that reported for C. albicans . In addition, we propose that purified cell wall mannans can be used as antagonist to block specific receptors on innate immune cells.
机译:目前,由副念珠菌复合体成员引起的全身感染与高发病率和死亡率有关,并被认为与由白色念珠菌引起的感染有关。由于真菌细胞壁是与宿主细胞接触的第一点,因此我们在此进行了副细胞念珠菌复合体成员中该细胞器的比较,以及与人外周血单核细胞(PBMC)相互作用期间的相关性。我们发现,C。parapsilosis复杂成员的壁在成分上相似,但与白色念珠菌不同,其甘露聚糖含量较低,β-葡聚糖和孔隙度较高。此外,与白色念珠菌相比,基于凝集素的分析显示,在感觉副念珠菌表面上几丁质和β1,3-葡聚糖的暴露增加。与白色念珠菌细胞相比,副念珠菌复合体成员的酵母细胞刺激人PBMC产生更多的细胞因子。并在去除O-连接的甘露聚糖后发生了显着变化,这表明该壁成分在致密感念珠菌对细胞因子的刺激中起着重要作用。当内壁组件暴露在壁表面时,C。parapsilosis sensu stricto和C. metapsilosisosis而不是C. orthopsilosis刺激更高的细胞因子产生。此外,我们发现对C.parapsilosis复合体成员强烈依赖于β1,3-葡聚糖识别,而对白色念珠菌活细胞则没有依赖性。而复合物的三个成员需要TLR4来产生TNFα,并通过直立弯曲线虫刺激IL-6。甘露糖受体在复合物成员刺激TNFα和IL-1β期间具有重要作用。最终,我们证明了从感觉短小念珠菌或白色念珠菌纯化的N-和O-甘露聚糖能够阻止人PBMC对这些病原体的识别。一起;我们的结果表明,C. parapsilosis复合体成员的固有免疫识别与白色念珠菌报道的有所不同。另外,我们提出纯化的细胞壁甘露聚糖可以用作拮抗剂来阻断先天免疫细胞上的特定受体。

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