研究:基于荧光显微镜的医疗器械残留细菌检测方案。

Q4 Medicine
Michael Wong, Yi Wang, Hao Wang, April K Marrone, Shanil P Haugen, Kaumudi Kulkarni, Ralph Basile, K Scott Phillips
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引用次数: 3

摘要

需要标准的方法来可靠和有效地评估加工医疗器械的细菌污染。本文介绍了基于荧光显微镜检测医疗器械(BAC-VIS)残留细菌的标准操作程序。BAC-VIS使用4',6-二氨基-2-苯基吲哚(DAPI)染色与荧光显微镜快速和经济有效地检测加工医疗器械部件的细菌污染。对BAC-VIS方案进行了优化,使用4种代表性生物实现了大于80%的染色效率和超过20的信噪比。该SOP首先被验证用于累积生物膜模型、被污染的临床使用设备的附属通道、接种的内窥镜端帽和o型环。用戊二醛、邻苯二醛和过氧乙酸三种常见的高浓度消毒剂反复处理粘附菌后,建立生物膜模型评价BAC-VIS。接下来,使用BAC-VIS评估临床使用的内窥镜部件革兰氏阴性菌培养阳性。在所有培养阳性装置上都发现了dapi染色的细胞,特别是在表面的凹槽和缺陷中。最后,采用BAC-VIS对接种的内窥镜装置部件进行细菌检测。结果表明,BAC-VIS有潜力成为工业和学术/医学研究人员调查受污染医疗器械的宝贵工具。使用BAC-VIS获得的结果可以增加对设计在可清洁性、磨损性和预防污染方面的作用的理解,并可能导致材料和设计的改进,从而使加工内窥镜对患者使用更安全。值得注意的是,本规程不适用于检测将重新投入临床使用的示波器或示波器部件上的细菌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research: Fluorescence Microscopy-Based Protocol for Detecting Residual Bacteria on Medical Devices.

Standard methods are needed to reliably and efficiently assess bacterial contamination of processed medical devices. This article demonstrates a standard operating procedure (SOP) for fluorescence microscopy-based detection of residual bacteria on medical devices (BAC-VIS). BAC-VIS uses a 4',6-diamidino-2-phenylindole (DAPI) stain with fluorescent microscopy to quickly and cost-effectively detect bacterial contamination of processed medical device parts. The BAC-VIS protocol was optimized and achieved greater than 80% staining efficiency and a signal-to-noise ratio of more than 20 using four representative organisms. The SOP was first validated for use on a buildup biofilm model, accessory channels of contaminated clinically used devices, and inoculated endoscope end caps and O-rings. The buildup biofilm model was used to evaluate BAC-VIS after repeated treatment of adherent bacteria with three common high-level disinfectants: glutaraldehyde, ortho-phthalaldehyde, and peracetic acid. Next, BAC-VIS was used to assess clinically used endoscope parts that cultured positive for Gram-negative bacteria. DAPI-stained cells were found on all culture-positive devices, especially in grooves and imperfections on the surface. Finally, BAC-VIS was used to detect bacteria on inoculated endoscope device components. The results showed potential for BAC-VIS to be a valuable tool for industry and academic/medical researchers for investigations of contaminated medical devices. Results obtained using BAC-VIS can increase understanding of the role of design in cleanability, wear, and prevention of contamination and may lead to improvements in materials and design that could make processed endoscope use safer for patients. Of note, this protocol is not for detecting bacteria on scopes or scope parts that will be put back into clinical use.

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来源期刊
Biomedical Instrumentation and Technology
Biomedical Instrumentation and Technology Computer Science-Computer Networks and Communications
CiteScore
1.10
自引率
0.00%
发文量
16
期刊介绍: AAMI publishes Biomedical Instrumentation & Technology (BI&T) a bi-monthly peer-reviewed journal dedicated to the developers, managers, and users of medical instrumentation and technology.
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