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Improvement of Biological Indicators by Uniformly Distributing Bacillus subtilis Spores in Monolayers To Evaluate Enhanced Spore Decontamination Technologies

机译:通过在单层中均匀分布枯草芽孢杆菌孢子来评估增强的孢子去污技术,从而改善生物学指标。

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Novel decontamination technologies, including cold low-pressure plasma and blue light (400 nm), are promising alternatives to conventional surface decontamination methods. However, the standardization of the assessment of such sterilization processes remains to be accomplished. Bacterial endospores of the genera Bacillus and Geobacillus are frequently used as biological indicators (BIs) of sterility. Ensuring standardized and reproducible BIs for reliable testing procedures is a significant problem in industrial settings. In this study, an electrically driven spray deposition device was developed, allowing fast, reproducible, and homogeneous preparation of Bacillus subtilis 168 spore monolayers on glass surfaces. A detailed description of the structural design as well as the operating principle of the spraying device is given. The reproducible formation of spore monolayers of up to 5 × 10~(7) spores per sample was verified by scanning electron microscopy. Surface inactivation studies revealed that monolayered spores were inactivated by UV-C (254 nm), low-pressure argon plasma (500 W, 10 Pa, 100 standard cubic cm per min), and blue light (400 nm) significantly faster than multilayered spores were. We have thus succeeded in the uniform preparation of reproducible, highly concentrated spore monolayers with the potential to generate BIs for a variety of nonpenetrating surface decontamination techniques.
机译:新型的去污技术,包括冷低压等离子体和蓝光(400 nm),是常规表面去污方法的有希望的替代方法。然而,对这种灭菌过程的评估的标准化仍有待完成。芽孢杆菌属和芽孢杆菌属的细菌内生孢子经常被用作无菌的生物指示剂(BIs)。在工业环境中,确保标准化和可复制的BI用于可靠的测试过程是一个重大问题。在这项研究中,开发了一种电动喷雾沉积设备,可以在玻璃表面上快速,可重复且均匀地制备枯草芽孢杆菌168孢子单层。详细介绍了喷涂装置的结构设计和工作原理。通过扫描电子显微镜验证了每个样品中可重复形成的最多5×10〜(7)个孢子的单层孢子。表面灭活研究表明,单层孢子被UV-C(254 nm),低压氩等离子体(500 W,10 Pa,100标准立方厘米每分钟)和蓝光(400 nm)灭活的速度明显快于多层孢子是。因此,我们成功地统一制备了可重现的,高度浓缩的单层孢子,并有望为各种非渗透性表面净化技术产生BI。

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