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纳米银/二氧化钛-壳聚糖抗病毒过滤器去除病毒气溶胶的效果。

Effectiveness of the Nanosilver/TiO-Chitosan Antiviral Filter on the Removal of Viral Aerosols.

机构信息

Institute of Environmental and Occupational Health Sciences, National Yang Ming Chiao Tung University, Taipei City, Taiwan (ROC).

Department of Pediatrics, Taipei Hospital, Ministry of Health and Welfare, New Taipei City, Taiwan (ROC).

出版信息

J Aerosol Med Pulm Drug Deliv. 2021 Sep;34(5):293-302. doi: 10.1089/jamp.2020.1607. Epub 2021 Mar 23.

Abstract

The precaution of airborne transmission of viruses, such as influenza, SARS, MERS, and COVID-19, is essential for reducing infection. In this study, we applied a zero-valent nanosilver/titania-chitosan (nano-Ag/TiO-CS) filter bed, whose broad-spectrum antimicrobial efficacy has been proven previously, for the removal of viral aerosols to minimize the risk of airborne transmission. The photochemical deposition method was used to synthesize the nano-Ag/TiO-CS antiviral material. The surface morphology, elemental composition, and microstructure of the nano-Ag/TiO-CS were analyzed by a scanning electron microscopy/energy dispersive X-ray spectroscopy and a transmission electron microscopy, respectively. The MS2 bacteriophages were used as surrogate viral aerosols. The antiviral efficacy of nano-Ag/TiO-CS was evaluated by the MS2 plaque reduction assay (PRA) and filtration experiments. In the filtration experiments, the MS2 aerosols passed through the nano-Ag/TiO-CS filter, and the MS2 aerosol removal efficiency was evaluated by an optical particle counter and culture method. In the MS2 PRA, 3 g of nano-Ag/TiO-CS inactivated 97% of MS2 bacteriophages in 20 mL liquid culture (2 ± 0.5 × 10 PFU/mL) within 2 hours. The removal efficiency of nano-Ag/TiO-CS filter (thickness: 6 cm) for MS2 aerosols reached up to 93%. Over 95% of MS2 bacteriophages on the surface of the nano-Ag/TiO-CS filter were inactivated within 20 minutes. The Wells-Riley model predicted that when the nano-Ag/TiO-CS filter was used in the ventilation system, airborne infection probability would reduce from 99% to 34.6%. The nano-Ag/TiO-CS filter could remain at 50% of its original antiviral efficiency after continuous operation for 1 week, indicating its feasibility for the control of the airborne transmission.

摘要

病毒(如流感、非典、中东呼吸综合征和新冠病毒)的空气传播预防对于减少感染至关重要。在这项研究中,我们应用了一种已被证明具有广谱抗菌功效的零价纳米银/二氧化钛-壳聚糖(nano-Ag/TiO-CS)过滤床来去除病毒气溶胶,以最大程度降低空气传播的风险。光化学沉积法被用于合成纳米银/二氧化钛-壳聚糖抗病毒材料。通过扫描电子显微镜/能谱分析和透射电子显微镜分别对纳米银/二氧化钛-壳聚糖的表面形貌、元素组成和微观结构进行了分析。采用 MS2 噬菌体作为模拟病毒气溶胶。通过 MS2 噬菌斑减少测定(PRA)和过滤实验评估了纳米银/二氧化钛-壳聚糖的抗病毒效果。在过滤实验中,MS2 气溶胶穿过纳米银/二氧化钛-壳聚糖过滤器,通过光学颗粒计数器和培养法评估 MS2 气溶胶去除效率。在 MS2 PRA 中,3g 的纳米银/二氧化钛-壳聚糖在 2 小时内可使 20mL 液体培养物(2±0.5×10PFU/mL)中的 97% MS2 噬菌体失活。纳米银/二氧化钛-壳聚糖过滤器(厚度:6cm)对 MS2 气溶胶的去除效率高达 93%。纳米银/二氧化钛-壳聚糖过滤器表面的 95%以上 MS2 噬菌体在 20 分钟内失活。威尔斯-莱利模型预测,当纳米银/二氧化钛-壳聚糖过滤器应用于通风系统时,空气传播感染的概率将从 99%降低至 34.6%。纳米银/二氧化钛-壳聚糖过滤器连续运行 1 周后,仍保持其原始抗病毒效率的 50%,表明其在控制空气传播方面具有可行性。

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