紫外线照射杀菌装置的设计、制造和可靠验证:COVID-19 时代医院消毒的必然选择

Ismael Martínez-Ramírez, C. Cruz-Cruz, Adolfo López Ornelas, E. M. Durán-Manuel, E. Estudillo, Iván Velasco, Miguel Angel Loyola-Cruz, Patricia Gutiérrez Zayas-Bazán, Jesús López López-Vargas, Yesenia Godínez-Cruz, Miguel Tufiño Velázquez, Gabriela Ibáñez Cervantes, Juan Manuel Bello López, Gerardo Silverio Contreras-Puente
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引用次数: 0

摘要

SARS-CoV-2 的大流行揭示了消毒方法的重要性,因为在包括医疗器械在内的受污染表面上,具有医疗重要性的病原体在数小时后仍可被检测到并具有感染性。这项工作的目的是设计、建造和验证短波长区域(200 至 320 纳米)的紫外线照射系统。我们研究了该系统通过体外消毒消除病原体(如 SARS-CoV-2、ESKAPE 细菌和生物膜及浮游真菌)的效果。在 0.25 J/cm2 的剂量下(紫外线照射 10 秒),浮游形态的 ESKAPE 细菌和真菌死亡率达到 100%。通过生物膜形成诱导试验,这些微生物显示出对紫外线处理的抵抗力;然而,在照射 20 秒后,它们的存活率未被检测到(通过共聚焦显微镜)。对于 SARS-CoV-2 而言,照射 120 秒后,其存活率达到 100%。这些证据表明,由于表面和医疗设备是传播病原体的潜在媒介,因此有必要采用新的方法对其进行消毒。本文讨论了在 COVID-19 时代使用紫外线作为新兴消毒方法的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, construction and robust validation of a germicidal device based on UV irradiation: a necessity for hospital disinfection in the COVID-19 era
Pandemic by SARS-CoV-2 has revealed the importance of disinfection methods due to pathogens of medical importance being detectable and infective after several hours on contaminated surfaces, including medical devices. The aim of this work was to design, construction, and validation of a UVC light irradiation system in the short wavelength region (200 to 320 nm). We studied the effective of the system through in vitro disinfection to eliminate pathogens such as SARS-CoV-2, ESKAPE bacteria and fungi in biofilm and planktonic forms. Doses of 0.25 J/cm2 (10 s of exposure to UVC light), 100% death of ESKAPE bacteria and fungi in planktonic form was observed. Through biofilm formation induction assays of these microorganisms showed resistance to treatment with UV light; however, their viability was not detected after 20 s of exposure (via confocal microscopy). For SARS-CoV-2, 100% reduction was reached after 120 s of exposure. This evidence shows the need to employ emerging methods of disinfection of surfaces and medical devices since these are potential vehicles for transmitting pathogens. The advantages of using UV light as an emergent disinfection method in the era of COVID-19 are discussed.
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