Kim Yu-Jin, Kim Jun-Beom, Song Chang-Seon, Nahm Sang-Soep
College of Veterinary Medicine, Konkuk University, Seoul 05029, Korea.
KCAV Co., Ltd., Seoul 05029, Korea.
Anim Biosci. 2022 Apr;35(4):631-637. doi: 10.5713/ab.21.0302. Epub 2021 Oct 21.
Surface disinfection is important in the proper running of livestock farms. However, disinfection of farm equipment and facilities is difficult because they are made of different materials, besides having large surface areas and complex structures. 3-(trimethoxysilyl)-propyldimethyloctadecyl ammonium chloride (Si-QAC) is a quaternary ammonium salt-based disinfectant that attaches to various surfaces by forming covalent bonds and maintains its disinfecting capacity for a considerable time. Our aim was to evaluate the potential use of Si-QAC for disinfection of farm equipment and facilities.
The short- and long-term antimicrobial and antiviral effects of Si-QAC were evaluated in both laboratory and farm settings using modified quantitative assessment method based on the standard operating procedures of the United States Environmental Protection Agency.
Si-QAC was highly effective in controlling the growth of the Newcastle disease virus and avian pathogenic Escherichia coli. Electron microscopy revealed that the mechanism underlying the disinfection activity of Si-QAC was associated with its ability to damage the outer membrane of the pathogen cells. In the field test, Si-QAC effectively reduced viral contamination of surfaces of equipment and space.
Our results suggest that Si-QAC has great potential as an effective chemical for disinfecting farm equipment and facilities. This disinfectant could retain its disinfection ability longer than other commercial disinfectants and contribute to better farm biosecurity.
表面消毒对畜牧场的正常运营至关重要。然而,农场设备和设施的消毒很困难,因为它们由不同材料制成,且表面积大、结构复杂。3-(三甲氧基甲硅烷基)丙基二甲基十八烷基氯化铵(Si-QAC)是一种基于季铵盐的消毒剂,通过形成共价键附着在各种表面上,并在相当长的时间内保持其消毒能力。我们的目的是评估Si-QAC在农场设备和设施消毒方面的潜在用途。
采用基于美国环境保护局标准操作程序的改良定量评估方法,在实验室和农场环境中评估Si-QAC的短期和长期抗菌及抗病毒效果。
Si-QAC在控制新城疫病毒和禽致病性大肠杆菌的生长方面非常有效。电子显微镜显示,Si-QAC消毒活性的潜在机制与其破坏病原体细胞外膜的能力有关。在现场试验中,Si-QAC有效降低了设备表面和空间的病毒污染。
我们的结果表明,Si-QAC作为一种有效的化学品,在农场设备和设施消毒方面具有巨大潜力。这种消毒剂比其他商业消毒剂保持消毒能力的时间更长,有助于提高农场生物安全性。