Jacksch Susanne, Zohra Huzefa, Weide Mirko, Schnell Sylvia, Egert Markus
Faculty of Medical and Life Sciences, Institute of Precision Medicine, Microbiology and Hygiene Group, Furtwangen University, 78054 Villingen-Schwenningen, Germany.
Research Centre for BioSystems, Land Use, and Nutrition (IFZ), Institute of Applied Microbiology, Justus-Liebig-University Giessen, 35392 Giessen, Germany.
Microorganisms. 2021 Apr 23;9(5):905. doi: 10.3390/microorganisms9050905.
Detergent drawer and door seal represent important sites for microbial life in domestic washing machines. Interestingly, quantitative data on the microbial contamination of these sites is scarce. Here, 10 domestic washing machines were swab-sampled for subsequent bacterial cultivation at four different sampling sites: detergent drawer and detergent drawer chamber, as well as the top and bottom part of the rubber door seal. The average bacterial load over all washing machines and sites was 2.1 ± 1.0 × 10 CFU cm (average number of colony forming units ± standard error of the mean (SEM)). The top part of the door seal showed the lowest contamination (11.1 ± 9.2 × 10 CFU cm), probably due to less humidity. Out of 212 isolates, 178 (84%) were identified on the genus level, and 118 (56%) on the species level using matrix-assisted laser desorption/ionization (MALDI) Biotyping, resulting in 29 genera and 40 identified species across all machines. The predominant bacterial genera were and , which were found at all sites. 22 out of 40 species were classified as opportunistic pathogens, emphasizing the need for regular cleaning of the investigated sites.
洗涤剂抽屉和门封是家用洗衣机中微生物生存的重要场所。有趣的是,关于这些部位微生物污染的定量数据很少。在这里,对10台家用洗衣机在四个不同的采样点进行了拭子采样,以便后续进行细菌培养:洗涤剂抽屉和洗涤剂抽屉腔,以及橡胶门封的顶部和底部。所有洗衣机和采样点的平均细菌载量为2.1±1.0×10 CFU/cm(菌落形成单位平均数±平均标准误差(SEM))。门封顶部的污染程度最低(11.1±9.2×10 CFU/cm),可能是因为湿度较小。在212株分离菌株中,使用基质辅助激光解吸/电离(MALDI)生物分型法在属水平上鉴定出178株(84%),在种水平上鉴定出118株(56%),所有洗衣机中共鉴定出29个属和40个种。主要的细菌属是 和 ,在所有采样点均有发现。40个种中有22个被归类为机会致病菌,这凸显了定期清洁这些调查部位的必要性。