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采用自动化染色仪器为细菌和炎性细胞制定标准化革兰氏染色程序。

Development of a standardized Gram stain procedure for bacteria and inflammatory cells using an automated staining instrument.

机构信息

Department of Clinical Laboratory, The Affiliated Hospital of Qingdao University, Qingdao, China.

Qingdao Women and Children's Hospital, Qingdao, China.

出版信息

Microbiologyopen. 2020 Sep;9(9):e1099. doi: 10.1002/mbo3.1099. Epub 2020 Jun 27.

Abstract

Gram stain is a subjective and poorly controlled test, and the resultant errors often perplex laboratory scientists. To reduce errors and make Gram stain a precisely controllable and meritorious test, a standardized Gram stain procedure for bacteria and inflammatory cells was developed using an automated staining instrument in this study. Freshly expectorated sputum specimens, used as the optimized targets, were smeared on slides by laboratory technicians, defining each slide loaded with uniform matrix and monolayer cell. And then, the staining and decolorizing time, as well as the stain and decolorant volume, were optimized as 15, 105, 1, and 25 s and 1.1, 1.4, 0.3, and 0.7 ml, respectively. Culture-positive blood specimens and original purulent fluids were used for confirming the developed standardized Gram stain procedure. Distinct tinctures of bacteria and inflammatory cells adhered to slide uniformly in a monolayer were observed, and the obtained staining results of these samples were highly consistent with their cultured results. Furthermore, according to the staining results under different staining conditions, an updated molecular mechanism of Gram stain for bacteria and the probable staining mechanism for inflammatory cells were also proposed in this study.

摘要

革兰氏染色是一种主观且控制不佳的测试,其结果错误常常令实验室科学家感到困惑。为了减少错误并使革兰氏染色成为一种精确可控且有价值的测试,本研究使用自动化染色仪器开发了一种标准化的革兰氏染色程序,用于细菌和炎性细胞。将新鲜的咳出痰标本用作优化的目标,由实验室技术人员在载玻片上涂抹,确保每个载玻片上都有均匀的基质和单层细胞。然后,优化染色和脱色时间、染色剂和脱色剂的体积,分别为 15、105、1 和 25 秒以及 1.1、1.4、0.3 和 0.7 毫升。使用培养阳性的血液标本和原始脓性液体来确认所开发的标准化革兰氏染色程序。观察到单层均匀附着在载玻片上的细菌和炎性细胞的明显着色,这些样本的染色结果与培养结果高度一致。此外,根据不同染色条件下的染色结果,本研究还提出了革兰氏染色细菌的更新分子机制以及炎性细胞可能的染色机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4bb/7520987/496b4678433e/MBO3-9-e1099-g001.jpg

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