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丝状芽孢杆菌黏附与侵袭的体外模型

In vitro model of adhesion and invasion by Bacillus piliformis.

作者信息

Franklin C L, Kinden D A, Stogsdill P L, Riley L K

机构信息

Department of Veterinary Pathology, College of Veterinary Medicine, University of Missouri, Columbia, Missouri 65211.

出版信息

Infect Immun. 1993 Mar;61(3):876-83. doi: 10.1128/iai.61.3.876-883.1993.

Abstract

An in vitro model of Bacillus piliformis infection was developed to investigate the mechanisms of adhesion and internalization of this obligate intracellular bacterium. Adhesion and internalization events were examined by electron microscopic evaluation of infected Caco-2 cell monolayers. A few bacteria were identified in apical surface invaginations and in vacuoles subjacent to the apical surface, whereas the majority of bacteria were observed free within the cytoplasm, suggesting that B. piliformis entered epithelial cells via a phagocytic process and rapidly escaped the phagosome. To confirm that host cell phagocytosis was involved in entry of B. piliformis into mammalian cells, Intestine 407 cells were treated with the phagocytic inhibitor cytochalasin D, infected with B. piliformis, and evaluated for bacterial internalization by double-fluorescence labeling. The results showed decreased intracellular bacteria, suggesting that internalization was dependent on host cell microfilament function. To examine the role of B. piliformis in internalization, growth of live and Formalin-killed bacteria was compared. Dead bacteria were not internalized, suggesting that B. piliformis actively participates in internalization. B. piliformis appears to enter host cells by a bacterially directed phagocytic process. The in vitro system described should prove invaluable in further investigations of B. piliformis pathogenic mechanisms.

摘要

构建了一个巴氏杆菌感染的体外模型,以研究这种专性细胞内细菌的黏附和内化机制。通过对感染的Caco-2细胞单层进行电子显微镜评估来检测黏附和内化事件。在顶端表面内陷处和顶端表面下方的液泡中发现了少数细菌,而大多数细菌在细胞质中呈游离状态,这表明巴氏杆菌通过吞噬过程进入上皮细胞并迅速逃离吞噬体。为了证实宿主细胞吞噬作用参与了巴氏杆菌进入哺乳动物细胞的过程,用吞噬抑制剂细胞松弛素D处理肠407细胞,使其感染巴氏杆菌,并通过双荧光标记评估细菌的内化情况。结果显示细胞内细菌数量减少,这表明内化依赖于宿主细胞微丝功能。为了研究巴氏杆菌在内化中的作用,比较了活细菌和福尔马林灭活细菌的生长情况。死细菌未被内化,这表明巴氏杆菌积极参与内化过程。巴氏杆菌似乎通过细菌主导的吞噬过程进入宿主细胞。所描述的体外系统在进一步研究巴氏杆菌致病机制方面应具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9be6/302814/ffc5e8c1d0f7/iai00015-0096-a.jpg

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