Electron microscopy study of the mode of growth of Pseudomonas pseudomallei in vitro and in vivo.

M Vorachit, K Lam, P Jayanetra, J W Costerton
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Abstract

The mode of growth of Pseudomonas pseudomallei in culture media and in the lung tissue of infected humans and animals was studied using transmission electron microscopy (TEM) and scanning electron microscopy (SEM). In culture media, P. pseudomallei cells were seen to be entrapped in microcolonies within large amounts of intercellular fibrous material. The lung tissue of infected humans and animals showed that bacterial cells growing in lung tissue were surrounded by radially arranged fibres that constitute a very well defined glycocalyx structure. In the infected areas of the animal lung tissue, bacterial cell could be seen to have formed glycocalyx enclosed microcolonies that displaced host cell components, e.g. the nucleus of a phagocyte. The presence of bacteria in unusual locations indicated that effective phagocytosis was not occurring. The demonstration that cells of P. pseudomallei produce exopolysaccharide glycocalyces and form glycocalyx enclosed microcolonies in laboratory media and in lung tissue of infected humans and animals and the presence of bacteria in unusual locations contribute to a new understanding of the mechanism whereby this organism can cause persistent chronic infections.

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假麦氏假单胞菌体外和体内生长方式的电镜研究。
采用透射电子显微镜(TEM)和扫描电子显微镜(SEM)研究了假麦氏假单胞菌在培养基和感染人、动物肺组织中的生长模式。在培养基中,假马勒假单胞菌细胞被包裹在大量细胞间纤维物质中的微菌落中。受感染的人和动物的肺组织表明,在肺组织中生长的细菌细胞被放射状排列的纤维包围,这些纤维构成了一个非常明确的糖萼结构。在动物肺组织的感染区域,可以看到细菌细胞形成糖萼封闭的微菌落,取代宿主细胞成分,例如吞噬细胞的细胞核。细菌出现在不寻常的位置表明没有发生有效的吞噬作用。假假假单胞杆菌的细胞在实验室培养基和受感染的人和动物的肺组织中产生外多糖糖萼并形成糖萼封闭的微菌落,以及细菌在不寻常位置的存在,有助于对这种生物引起持续慢性感染的机制有新的理解。
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Changes in the anthropometric status of rural African under-fives during a decade of primary health care. Enterovirus specific IgM responses in children with acute and chronic paralytic syndrome. Soluble transferrin receptor as an index of iron status in Zaïrian children with malaria. Electron microscopy study of the mode of growth of Pseudomonas pseudomallei in vitro and in vivo. Acute aphasia complicating typhoid fever in an adult.
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