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在连续细胞系上生长的查菲埃立克体的细胞病变效应、蚀斑形成和裂解

Cytopathic effect, plaque formation, and lysis of Ehrlichia chaffeensis grown on continuous cell lines.

作者信息

Brouqui P, Birg M L, Raoult D

机构信息

Unité des Rickettsies, Faculté de Médecine, Marseille, France.

出版信息

Infect Immun. 1994 Feb;62(2):405-11. doi: 10.1128/iai.62.2.405-411.1994.

Abstract

Ehrlichiae are strict intracellular bacterial pathogens that parasitize leukocytes or other blood cells. Only six agents of the tribe Ehrlichieae, namely, Cowdria ruminantium, Neorickettsia helminthoeca, Ehrlichia risticii, Ehrlichia sennetsu, Ehrlichia canis, and Ehrlichia chaffeensis, have been adapted to growth in continuous cell lines. E. chaffeensis, the agent of human ehrlichiosis, has been cultured only in a cell line of canine origin. We adapted purified cell-free E. chaffeensis for growth in human embryonic lung (HEL) fibroblasts (HEL 299), green monkey kidney cells (Vero), and a human cervical epithelioid carcinoma (HeLa) cell line. We observed a cytopathic effect with both Vero cells and HEL cells and plaque formation with cellular lysis when infected Vero cells were cultured in agar. Human fibroblasts are already commonly used for the isolation of viruses, coexiellae, and rickettsiae. Furthermore, the capability of these cells to support the growth of ehrlichiae suggests that they may be useful for primary isolation of ehrlichiae as well. The cytopathic effect produced in Vero or HEL cells offers a very helpful indicator of the infection. Plaque formation in Vero cells is a new phenomenon not yet reported for ehrlichiae and will allow the titration of inocula and clonal purification of this bacterium.

摘要

埃立克体是严格的细胞内细菌病原体,寄生于白细胞或其他血细胞。埃立克体族中只有六种病原体,即反刍兽考德里氏体、蠕虫新立克次体、里氏埃立克体、腺热埃立克体、犬埃立克体和恰菲埃立克体,已适应在连续细胞系中生长。人类埃立克体病的病原体恰菲埃立克体,仅在犬源细胞系中培养过。我们使纯化的无细胞恰菲埃立克体适应于在人胚肺(HEL)成纤维细胞(HEL 299)、绿猴肾细胞(Vero)和人宫颈上皮样癌细胞系(HeLa)中生长。我们在Vero细胞和HEL细胞中均观察到细胞病变效应,并且当将感染的Vero细胞培养在琼脂中时,会出现伴有细胞裂解的空斑形成。人成纤维细胞已普遍用于病毒、柯克斯体和立克次体的分离。此外,这些细胞支持埃立克体生长的能力表明它们可能也有助于埃立克体的初次分离。Vero细胞或HEL细胞中产生的细胞病变效应为感染提供了非常有用的指标。Vero细胞中的空斑形成是埃立克体尚未报道的新现象,将有助于对接种物进行滴定以及对该细菌进行克隆纯化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4969/186122/ea8234804e5b/iai00002-0088-a.jpg

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