首页> 美国卫生研究院文献>other >Intestinal Cell Tight Junctions Limit Invasion of Candida albicans through Active Penetration and Endocytosis in the Early Stages of the Interaction of the Fungus with the Intestinal Barrier
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Intestinal Cell Tight Junctions Limit Invasion of Candida albicans through Active Penetration and Endocytosis in the Early Stages of the Interaction of the Fungus with the Intestinal Barrier

机译:肠道细胞紧密连接在真菌与肠道屏障相互作用的早期通过主动渗透和内吞作用限制了白色念珠菌的入侵。

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摘要

C. albicans is a commensal yeast of the mucous membranes in healthy humans that can also cause disseminated candidiasis, mainly originating from the digestive tract, in vulnerable patients. It is necessary to understand the cellular and molecular mechanisms of the interaction of C. albicans with enterocytes to better understand the basis of commensalism and pathogenicity of the yeast and to improve the management of disseminated candidiasis. In this study, we investigated the kinetics of tight junction (TJ) formation in parallel with the invasion of C. albicans into the Caco-2 intestinal cell line. Using invasiveness assays on Caco-2 cells displaying pharmacologically altered TJ (i.e. differentiated epithelial cells treated with EGTA or patulin), we were able to demonstrate that TJ protect enterocytes against invasion of C. albicans. Moreover, treatment with a pharmacological inhibitor of endocytosis decreased invasion of the fungus into Caco-2 cells displaying altered TJ, suggesting that facilitating access of the yeast to the basolateral side of intestinal cells promotes endocytosis of C. albicans in its hyphal form. These data were supported by SEM observations of differentiated Caco-2 cells displaying altered TJ, which highlighted membrane protrusions engulfing C. albicans hyphae. We furthermore demonstrated that Als3, a hypha-specific C. albicans invasin, facilitates internalization of the fungus by active penetration and induced endocytosis by differentiated Caco-2 cells displaying altered TJ. However, our observations failed to demonstrate binding of Als3 to E-cadherin as the trigger mechanism of endocytosis of C. albicans into differentiated Caco-2 cells displaying altered TJ.
机译:白色念珠菌是健康人粘膜的共生酵母,在脆弱的患者中也可引起散发性念珠菌病,主要是来自消化道。有必要了解白色念珠菌与肠细胞相互作用的细胞和分子机制,以更好地了解酵母的共鸣基础和致病性,并改善散发性念珠菌病的管理。在这项研究中,我们调查了紧密连接(TJ)形成的动力学与白色念珠菌入侵Caco-2肠细胞系的并行性。使用显示药理学改变的TJ(即用EGTA或棒曲霉素处理的分化上皮细胞)的Caco-2细胞的侵袭性测定,我们能够证明TJ保护肠上皮细胞免受白色念珠菌的侵袭。而且,用内吞作用的药理学抑制剂处理减少了真菌侵入显示出TJ改变的Caco-2细胞,这表明促进酵母接近肠道细胞的基底外侧可以促进白色念珠菌的菌丝形式的内吞作用。 SEM观察到分化的Caco-2细胞显示出改变的TJ,从而突出了吞噬白色念珠菌菌丝的膜突起,这些数据得到了支持。我们进一步证明,Als3,一种菌丝特异性白色念珠菌侵染素,通过主动渗透促进真菌内在化,并通过显示改变的TJ的分化Caco-2细胞诱导内吞。然而,我们的观察未能证明Als3与E-钙粘蛋白的结合是 C 内吞作用的触发机制。 白色念珠进入分化的Caco-2细胞,表现出TJ改变。

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