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人类吞噬细胞中嗜肺军团菌费城菌株在伪足卷曲内的吞噬作用。与其他军团菌菌株和种类的比较。

Engulfment of the Philadelphia strain of Legionella pneumophila within pseudopod coils in human phagocytes. Comparison with other Legionella strains and species.

作者信息

Rechnitzer C, Blom J

机构信息

Department of Clinical Microbiology, Statens Seruminstitut, Rigshospitalet, Copenhagen, Denmark.

出版信息

APMIS. 1989 Feb;97(2):105-14.

PMID:2920101
Abstract

In this paper we report our ultrastructural studies of the early phagocytosis of two different strains of L. pneumophila serogroup (SG) 1 (Philadelphia 1 and Knoxville 1) and of L. micdadei. These bacteria replicate, in vivo as well as in vitro, in eukaryotic cells e.g. in monocytes and macrophages. Whether or not the mode of entry of these organisms in phagocytes contributes to their intracellular survival is presently unknown. Whilst internalization of bacteria of the Philadelphia 1 strain occurred within a pseudopod coil, organisms of the Knoxville 1 strain and L. micdadei were phagocytized in the classical manner, i.e. between pseudopods. No ultrastructural differences were observed between the two strains of L. pneumophila SG 1 whereas L. micdadei appeared as shorter rods with an extracellular layer of relatively low electron density. The phenomenon of coiling phagocytosis was not affected by heat-killing the bacteria or preopsonization with specific antibody. Formation of phagolysosomes was seen when cells of the Knoxville strain and L. micdadei were used but not with the Philadelphia strain. In our experiments, the occurrence of coiling phagocytosis was specific for the Philadelphia 1 strain of L. pneumophila and independent of bacterial virulence. Thus, it seems most unlikely that the coiling phenomenon plays any important role in the resistance of Legionella to the killing abilities of phagocytic cells.

摘要

在本文中,我们报告了对嗜肺军团菌血清型(SG)1的两种不同菌株(费城1型和诺克斯维尔1型)以及米克戴德军团菌早期吞噬作用的超微结构研究。这些细菌在真核细胞(如单核细胞和巨噬细胞)内以及体外均可复制。目前尚不清楚这些微生物进入吞噬细胞的方式是否有助于它们在细胞内存活。虽然费城1型菌株的细菌内化发生在伪足卷曲内,但诺克斯维尔1型菌株和米克戴德军团菌的细菌是以经典方式被吞噬的,即在伪足之间。嗜肺军团菌血清型1的两种菌株之间未观察到超微结构差异,而米克戴德军团菌呈现为较短的杆菌,有一层电子密度相对较低的细胞外层。卷曲吞噬现象不受热灭活细菌或用特异性抗体进行预调理的影响。当使用诺克斯维尔菌株和米克戴德军团菌的细胞时可观察到吞噬溶酶体的形成,但使用费城菌株时则未观察到。在我们的实验中,卷曲吞噬现象是嗜肺军团菌费城1型菌株所特有的,且与细菌毒力无关。因此,卷曲现象似乎极不可能在军团菌对吞噬细胞杀伤能力的抗性中发挥任何重要作用。

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