Chen Wei-Chuan, Ho Mei-Hsiu, Yuan Shin-Huan, Chou Hui-Wen, Chang Chi-Chuan, Chen Chih-Hung, Lin Yusen Eason
Department of Medical Education and Research, Kaohsiung Veterans General Hospital, Kaohsiung 813414, Taiwan.
Department of Pharmacy and Master Program, Tajen University, Pingtung County 907101, Taiwan.
Pathogens. 2024 Dec 30;14(1):13. doi: 10.3390/pathogens14010013.
Microorganisms, including pathogens that cause skin, respiratory, and urinary tract infections, are widespread in our environment. Despite routine cleaning with bleach and disinfectants, the transmission of pathogens still occurs, leading to potential infectious diseases. This study aimed to determine the antibacterial effect of two coating formulas against common environmental pathogens like , , , , sp., vancomycin-resistant , and . The antibacterial coatings exhibited efficacy against these pathogens, with a bacterial reduction rate (R) greater than two, even after prolonged bleach cleaning. However, UV exposure may affect the efficacy of such coatings. The antibacterial coatings can eliminate the need for repetitive consumption of toxic detergents and reduce cleaning manpower, making them an environmentally friendly product for safety control and infection prevention.
微生物,包括引起皮肤、呼吸道和泌尿道感染的病原体,在我们的环境中广泛存在。尽管常规使用漂白剂和消毒剂进行清洁,但病原体的传播仍然发生,导致潜在的传染病。本研究旨在确定两种涂层配方对常见环境病原体如 、 、 、 、 属、耐万古霉素 以及 的抗菌效果。抗菌涂层对这些病原体表现出有效性,即使经过长时间的漂白剂清洁,细菌减少率(R)仍大于2。然而,紫外线照射可能会影响此类涂层的有效性。抗菌涂层可以消除对有毒洗涤剂的重复消耗需求并减少清洁人力,使其成为用于安全控制和感染预防的环保产品。