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["布鲁氏菌的细胞内增殖 实验模型理论(作者译)"]

[The intracellular multiplication of "Brucella" The theory for an experimental model (author's transl)].

作者信息

Roux J, Arnaud-Bosq C

出版信息

Ann Microbiol (Paris). 1975 May-Jun;126A(4):461-81.

PMID:1200552
Abstract

Brucella melitensis can penetrate and multiply in cells of the BHK21 line. The intracellular bacteria can be counted either by culture after destruction of the cells or by direct examination after staining; in the latter case, the cells are distributed into various classes according to the number of bacteria which they contain. The number of intracellular bacteria increased exponentially and the division time is 12 hours. The intracellular division of the bacteria is independent of the cellular invasion. The infection by bacteria is not a factor related to mortality nor to survival of the cells. Whatever the number of bacteria initially placed on the BHK21 cells (up to 1,000 bacteria per cell), the number of infected cells never increased about 20%, and this indicates that all the cells do not have the same aptitude for the phagocytosis of Brucella. A mathematical model is suggested. Taking all factors into account, the model shows the probability for a certain number of Brucella per cell and, on the other hand, it shows the mean number of Brucella per cell at any particular moment. This model can be used in the case of other bacteria and of other cells, and can be used whenever a precise study of the intracellular multiplication of bacteria is required.

摘要

羊种布鲁氏菌可侵入BHK21细胞系的细胞并在其中繁殖。细胞内的细菌可通过细胞破坏后培养计数,也可通过染色后直接检查计数;在后一种情况下,细胞根据所含细菌数量分为不同类别。细胞内细菌数量呈指数增长,分裂时间为12小时。细菌的细胞内分裂与细胞侵袭无关。细菌感染既不是与细胞死亡率相关的因素,也不是与细胞存活相关的因素。无论最初接种在BHK21细胞上的细菌数量是多少(每个细胞最多1000个细菌),被感染细胞的数量从未增加超过约20%,这表明并非所有细胞对布鲁氏菌的吞噬能力都相同。提出了一个数学模型。综合考虑所有因素,该模型显示了每个细胞中一定数量布鲁氏菌的概率,另一方面,它显示了在任何特定时刻每个细胞中布鲁氏菌的平均数量。该模型可用于其他细菌和其他细胞的情况,并且每当需要精确研究细菌在细胞内的繁殖时均可使用。

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