过氧单硫酸钾对水相包膜病毒的有效性及其在各种污染载体表面和人工禽流感病毒污染衣物上的应用。

IF 1.7 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Veterinary World Pub Date : 2024-11-01 Epub Date: 2024-11-22 DOI:10.14202/vetworld.2024.2595-2602
Sakchai Ruenphet, Nutnaree Kunanusont, Darsaniya Punyadarsaniya
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引用次数: 0

摘要

背景与目的:过氧单硫酸氢钾(PPMS)是一种广谱消毒剂,可氧化病毒蛋白衣壳。PPMS杀灭病毒的有效性取决于几个因素,包括其浓度、接触时间和有机物质的存在。本研究评估了PPMS在水相中的疗效。该研究还将PPMS应用于人工禽流感病毒(AIV)污染的载体表面和衣物,并与二氯异氰尿酸钠(NaDCC)和季铵化合物(QAC)的效果进行了比较。材料与方法:测定4种浓度(1×、0.5×、0.25×、0.125×)的PPMS对新城疫病毒(NDV)和AIV的水相杀灭效果。评估包括在不同暴露时间(如5秒、30秒、1分钟、3分钟、5分钟、10分钟和15分钟)下不存在和不存在有机材料的情况下的测试。在污染的载体表面(如不锈钢、橡胶、塑料和人工污染的衣服)上评估AIV的失活情况。结果:在水相中,浓度为1x、0.5 x、0.25 x、0.125 x的NDV在无有机物的情况下,分别在浓度为1x、0.5 x、0.25 x、0.125 x下,在5 s、5 s、5 min、15 min内灭活。在有有机物污染的情况下,NDV在30 s内灭活1×, 1 min内灭活0.5×, 10 min内灭活0.25×;然而,0.125× PPMS并没有在15 min内灭活AIV。在无有机物和有机物存在的情况下,浓度为1×、0.5×、0.25×和0.125×的PPMS分别在5 s、5 s、5 s和30 s内灭活AIV。1倍浓度的PPMS能在30 s内灭活所有载体上的AIV。0.5×和0.25×浓度的PPMS可在30 s内灭活橡胶和塑料上的AIV;不锈钢在1分钟内发生失活。然而,0.125× PPMS和1× QAC在所有载体上均不能在3 min内实现失活。最后,1×、0.5×、0.25×和0.125×浓度的PPMS分别在5 s、30 s、5 min和15 min内灭活人造丝片上的AIV。然而,推荐浓度的NaDCC在10分钟内灭活,而QAC在15分钟内没有灭活。结论:PPMS可以灭活NDV和AIV等包膜病毒。此外,PPMS在各种载体表面和人为污染的衣服上的灭活能力优于NaDCC和QAC。然而,PPMS的杀病毒效果取决于最佳浓度、有机材料条件和暴露/接触时间。因此,PPMS是一种很有前途的替代消毒剂,对加强生物安全和控制污染动物农场、屠宰场和医院的病毒至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effectiveness of potassium peroxymonosulfate against enveloped viruses using an aqueous phase and its application on various contaminated carrier surfaces and artificially avian influenza virus-contaminated clothes.

Background and aim: Potassium peroxymonosulfate (PPMS) is a broad-spectrum disinfectant that oxidizes viral protein capsids. The effectiveness of PPMS in killing viruses depends on several factors, including its concentration, contact time, and present of organic materials. This study evaluated the efficacy of PPMS in an aqueous phase. It also applied PPMS to artificially avian influenza virus (AIV)-contaminated carrier surfaces and clothes and compared its effectiveness with that of sodium dichloroisocyanurate (NaDCC) and quaternary ammonium compounds (QAC).

Materials and methods: Four PPMS concentrations (1×, 0.5×, 0.25×, and 0.125×), were evaluated for their virucidal efficacy against Newcastle disease virus (NDV) and AIV in an aqueous phase. The evaluation included testing in the absence and presence of organic materials under different exposure times, such as 5 s, 30 s, 1 min, 3 min, 5 min, 10 min, and 15 min. AIV inactivation was assessed on contaminated carrier surfaces, such as stainless steel, rubber, plastic, and artificially contaminated clothes.

Results: In aqueous phase, concentrations of 1×, 0.5×, 0.25×, and 0.125× inactivated NDV in the absence of organic materials within 5 s, 5 s, 5 min, and 15 min at concentrations of 1×, 0.5×, 0.25×, and 0.125×, respectively. In the presence of organic material contamination, NDV could be inactivated within 30 s for 1×, 1 min for 0.5×, and 10 min for 0.25×; however, 0.125× PPMS did not achieve inactivation within 15 min. PPMS concentrations of 1×, 0.5×, 0.25×, and 0.125× inactivated AIV within 5 s, 5 s, 5 s, and 30 s, respectively, in both the absence and presence of organic materials. PPMS at a concentration of 1× could inactivate AIV on all carriers within 30 s. PPMS at 0.5× and 0.25× concentrations could inactivate AIV within 30 s on rubber and plastic; inactivation occurred within 1 min on stainless steel. However, 0.125× PPMS and 1× QAC could not achieve inactivation within 3 min on all carriers. Finally, PPMS concentrations of 1×, 0.5×, 0.25×, and 0.125× inactivated AIV on rayon sheets within 5 s, 30 s, 5 min, and 15 min, respectively. However, the recommended NaDCC concentration achieved inactivation within 10 min, whereas QAC did not achieve inactivation within 15 min.

Conclusion: PPMS can inactivate enveloped viruses such as NDV and AIV. Furthermore, PPMS is superior to NaDCC and QAC for inactivating viruses on various carrier surfaces and artificially contaminated clothes. However, the virucidal efficacy of PPMS depends on the optimal concentration, organic material conditions, and exposure/contact timing. Therefore, PPMS is a promising alternative disinfectant crucial for enhancing biosecurity and controlling viruses that contaminate animal farms, slaughterhouses, and hospitals.

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来源期刊
Veterinary World
Veterinary World Multiple-
CiteScore
3.60
自引率
12.50%
发文量
317
审稿时长
16 weeks
期刊介绍: Veterinary World publishes high quality papers focusing on Veterinary and Animal Science. The fields of study are bacteriology, parasitology, pathology, virology, immunology, mycology, public health, biotechnology, meat science, fish diseases, nutrition, gynecology, genetics, wildlife, laboratory animals, animal models of human infections, prion diseases and epidemiology. Studies on zoonotic and emerging infections are highly appreciated. Review articles are highly appreciated. All articles published by Veterinary World are made freely and permanently accessible online. All articles to Veterinary World are posted online immediately as they are ready for publication.
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