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基于双子座的自消毒表面处理技术预防传染病接触传播

Gemini-Mediated Self-Disinfecting Surfaces to Address the Contact Transmission of Infectious Diseases.

机构信息

Dental Research Institute and Department of Dental Biomaterials Science, Seoul National University School of Dentistry, Seoul 03080, South Korea.

Marine Science Institute, University of California, Santa Barbara, California 93106, United States.

出版信息

Langmuir. 2022 Feb 15;38(6):2162-2173. doi: 10.1021/acs.langmuir.1c03401. Epub 2022 Feb 2.

Abstract

According to both the Center for Disease Control and the World Health Organization, contact transmission is the primary transmission route of infectious diseases worldwide. Usually, this is mitigated by a schedule of repeated regular sanitization, yet surfaces are easily re-contaminated in the interim between cleanings. One solution to this problem is to generate self-disinfecting surfaces that can display sustained virucidal/antimicrobial properties against pathogens that settle upon them. Quaternary ammonium organosilicon compounds are ideal candidates to achieve this; cationic surfactants are safe and well-established surface disinfectants, while organosilanes are used broadly to form durable coatings with altered surface properties on many different materials. Despite their potential to circumvent the disadvantages of traditional disinfection methods, extant commercially available quaternary ammonium silanes do not display comparable efficacy to the standard surface disinfectants, nor have their respective coatings been demonstrated to meet the Environmental Protection Agency's guidelines for residual/extended efficacy. Inspired by the powerful surface activity of double-headed "gemini" surfactants, here, we present gemini-diquaternary silanes (GQs) with robust residual germicidal efficacy on various surfaces by incorporating a second cationic "head" to the structure of a conventional monoquaternary ammonium silane (MQ). Aqueous solutions of GQs were tested in suspension- and surface-antimicrobial assays against an array of pathogens, including , , , and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). GQ performance was benchmarked against the common disinfectants, ethanol, hydrogen peroxide, hypochlorite, as well as MQ. Solutions of GQs were efficacious when used for immediate disinfection (>10-fold reduction in 15 s). Additionally, GQs were demonstrated to impart durable self-disinfecting properties to a variety of porous and nonporous surfaces, effective after repeated cycles of abrasion and repeated contaminations, and with superior coating ability and activity (>10 higher activity) than that of MQs. GQs as surface treatments show great promise to overcome the limitations of traditional disinfectants in preventing the spread of infectious diseases.

摘要

根据疾病控制中心和世界卫生组织的说法,接触传播是全球传染病的主要传播途径。通常,这可以通过定期重复消毒来缓解,但在清洁之间,表面很容易再次受到污染。解决此问题的一种方法是生成自消毒表面,这些表面可以对落在其上的病原体表现出持续的杀病毒/抗菌性能。季铵有机硅化合物是实现此目标的理想候选物;阳离子表面活性剂是安全且成熟的表面消毒剂,而有机硅烷广泛用于在许多不同材料上形成具有改变表面性能的耐用涂层。尽管它们有可能克服传统消毒方法的缺点,但现有的市售季铵硅烷并没有表现出与标准表面消毒剂相当的功效,也没有证明其各自的涂层符合环境保护局对残留/延长功效的指导方针。受双头“双子”表面活性剂强大表面活性的启发,在这里,我们通过在常规单季铵硅烷(MQ)的结构中引入第二个阳离子“头”,提出了具有各种表面上强大残留杀菌功效的双子季铵硅烷(GQ)。将 GQ 的水溶液在悬浮和表面抗菌测定中针对一系列病原体进行了测试,包括、、、和严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)。GQ 的性能与常见消毒剂、乙醇、过氧化氢、次氯酸盐以及 MQ 进行了基准测试。当立即用于消毒时,GQ 溶液是有效的(在 15 秒内减少 10 倍以上)。此外,GQ 被证明赋予了各种多孔和非多孔表面持久的自消毒性能,即使经过反复磨损和反复污染循环,以及具有优于 MQ 的优异的涂层能力和活性(高 10 倍以上)。GQ 作为表面处理剂具有很大的潜力,可以克服传统消毒剂在预防传染病传播方面的局限性。

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