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首页> 外文期刊>Applied and Environmental Microbiology >Detection and Differentiation of Chlamydiae by Fluorescence In Situ Hybridization
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Detection and Differentiation of Chlamydiae by Fluorescence In Situ Hybridization

机译:荧光原位杂交技术检测和鉴定衣原体

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摘要

Chlamydiae are important pathogens of humans and animals but diagnosis of chlamydial infections is still hampered by inadequate detection methods. Fluorescence in situ hybridization (FISH) using rRNA-targeted oligonucleotide probes is widely used for the investigation of uncultured bacteria in complex microbial communities and has recently also been shown to be a valuable tool for the rapid detection of various bacterial pathogens in clinical specimens. Here we report on the development and evaluation of a hierarchic probe set for the specific detection and differentiation of chlamydiae, particularly C. pneumoniae, C. trachomatis, C. psittaci, and the recently described chlamydia-like bacteria comprising the novel genera Neochlamydia and Parachlamydia. The specificity of the nine newly developed probes was successfully demonstrated by in situ hybridization of experimentally infected amoebae and HeLa 229 cells, including HeLa 229 cells coinfected with C. pneumoniae and C. trachomatis. FISH reliably stained chlamydial inclusions as early as 12 h postinfection. The sensitivity of FISH was further confirmed by combination with direct fluorescence antibody staining. In contrast to previously established detection methods for chlamydiae, FISH was not susceptible to false-positive results and allows the detection of all recognized chlamydiae in one single step.
机译:衣原体是人类和动物的重要病原体,但衣原体感染的诊断仍因检测方法不足而受阻。使用靶向rRNA的寡核苷酸探针的荧光原位杂交(FISH)被广泛用于研究复杂微生物群落中未培养的细菌,并且最近还被证明是快速检测临床标本中各种细菌病原体的有价值的工具。在这里,我们报告了用于特异性检测和区分衣原体,特别是肺炎衣原体,沙眼衣原体,鹦鹉热衣原体以及最近描述的衣原体样细菌的分层探针组的开发和评估,该细菌包括新衣原体和衣原体。 。通过原位杂交实验感染的变形虫和HeLa 229细胞(包括感染了肺炎衣原体和沙眼衣原体的HeLa 229细胞),成功地证明了这9种新开发的探针的特异性。 FISH最早在感染后12小时就对衣原体包涵体进行了可靠的染色。通过与直接荧光抗体染色相结合,进一步证实了FISH的敏感性。与以前建立的衣原体检测方法相比,FISH不易受到假阳性结果的影响,并允许在一个步骤中检测所有已识别的衣原体。

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