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In Vitro Studies on Rickettsia-Host Cell Interactions: Intracellular Growth Cycle of Virulent and Attenuated Rickettsia prowazeki in Chicken Embryo Cells in Slide Chamber Cultures

机译:立克次体与宿主细胞相互作用的体外研究:滑动室培养中鸡胚细胞中毒性和减毒的立克次氏体prowazeki的细胞内生长周期。

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摘要

Upon entry into the cytoplasm of irradiated chicken embryo cells in slide chamber cultures infected over a 2-h period, yolk sac-grown virulent (Breinl strain) and attenuated (E strain) Rickettsia prowazeki underwent indistinguishable reproducible intracellular growth cycles. They promptly entered an exponential growth phase, without detectable lag and without microscopic evidence for any unusual early replicative phase. The generation time for both strains was 8.8 to 8.9 h at 34 C. During most of this period, the state of the organisms and growth were very similar from one cell to another. The exponential-growth phase continued for at least 36 to 48 h, when the rickettsiae became too numerous to count by microscopic examination. Between about 36 and 48 h, cells packed with rickettsiae began irregularly to break down and release organisms. These began to initiate new infection cycles in previously uninfected cells over many hours, as demonstrated by the rise in percentage of cells infected, yielding a highly disordered infected culture with different cells containing rickettsiae in diverse stages of growth. The organisms underwent regular minor changes in morphology, similar to those seen in bacterial cultures, in the first infection cycle. As the cells became packed with rickettsiae, the microorganisms regularly diminished in size to become minute coccobacillary to coccoid forms. However, the rickettsiae in the second and subsequent infection cycles in aging cultures often assumed filamentous or swollen bizarre forms. Only the first infection cycle conformed closely to the concept of a one-step growth cycle. A set of terms is proposed and defined for the infection cycle.
机译:在经过2小时的感染的载玻片培养物中进入辐照过的鸡胚细胞的细胞质后,卵黄囊生长的有毒力(Breinl株)和减毒(E株)立克次氏菌经历了难以区分的可再现的细胞内生长周期。他们迅速进入了指数生长期,没有可察觉的滞后,也没有任何异常的早期复制期的微观证据。两种菌株在34 C的产生时间为8.8至8.9 h。在此期间的大部分时间里,一种细胞与另一种细胞的生物状态和生长情况非常相似。立克次体数量过多以至于无法通过显微镜检查计数时,指数生长阶段至少持续了36至48小时。在约36至48小时之间,充满立克次体的细胞开始不规则地分解并释放出生物。这些在许多小时内开始在先前未感染的细胞中引发新的感染周期,这被感染细胞的百分比增加所证明,从而产生了高度失调的感染培养物,其中含有不同生长阶段的立克次体的不同细胞。在第一个感染周期中,这种微生物的形态发生了规律性的微小变化,类似于细菌培养中看到的形态。当细胞被立克次体包装时,微生物的大小会定期减小,以至微小的球状杆菌到球状形式。然而,在衰老培养物中第二和随后的感染周期中立克次体通常假定为丝状或肿胀的奇异形式。只有第一个感染周期与一步生长周期的概念紧密相关。为感染周期提出并定义了一组术语。

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