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超声洁牙机传播病毒及其抗病毒剂预防的体外研究。

Virus transmission by ultrasonic scaler and its prevention by antiviral agent: An in vitro study.

机构信息

Department of Endodontic and Restorative Dentistry, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.

Department of Endodontic and Restorative Dentistry, University Clinical Centre Ljubljana, Ljubljana, Slovenia.

出版信息

J Periodontol. 2022 Jul;93(7):e116-e124. doi: 10.1002/JPER.21-0335. Epub 2021 Dec 28.

Abstract

BACKGROUND

It is well recognized that dental procedures represent a potential way of infection transmission. With the COVID-19 pandemic, the focus of dental procedure associated transmission has rapidly changed from bacteria to viruses. The aim was to develop an experimental setup for testing the spread of viruses by ultrasonic scaler (USS) generated dental spray and evaluate its mitigation by antiviral coolants.

METHODS

In a virus transmission tunnel, the dental spray was generated by USS with saline coolant and suspension of Equine Arteritis Virus (EAV) delivered to the USS tip. Virus transmission by settled droplets was evaluated with adherent RK13 cell lines culture monolayer. The suspended droplets were collected by a cyclone aero-sampler. Antiviral activity of 0.25% NaOCl and electrolyzed oxidizing water (EOW) was tested using a suspension test. Antiviral agents' transmission prevention ability was evaluated by using them as a coolant.

RESULTS

In the suspension test with 0.25% NaOCl or EOW, the TCID50/mL was below the detection limit after 5 seconds. With saline coolant, the EAV-induced cytopathic effect on RK13 cells was found up to the distance of 45 cm, with the number of infected cells decreasing with distance. By aero-sampler, viral particles were detected in concentration ≤4.2 TCID50/mL. With both antiviral agents used as coolants, no EAV-associated RK-13 cell infection was found.

CONCLUSION

We managed to predictably demonstrate EAV spread by droplets because of USS action. More importantly, we managed to mitigate the spread by a simple substitution of the USS coolant with NaOCl or EOW.

摘要

背景

人们已经认识到,牙科操作可能会导致感染的传播。随着 COVID-19 大流行,牙科操作相关传播的焦点已迅速从细菌转移到病毒。本研究旨在开发一种实验装置,以测试超声洁牙机(USS)产生的牙科喷雾传播病毒的情况,并评估抗病毒冷却剂对其的抑制作用。

方法

在病毒传播隧道中,使用盐水冷却剂和马动脉炎病毒(EAV)混悬液来驱动 USS 产生牙科喷雾,并将其输送至 USS 尖端。用粘附RK13 细胞系培养单层来评估沉降液滴中的病毒传播。用旋风空气采样器收集悬浮液滴。使用悬液试验来测试 0.25%次氯酸钠和电解氧化水(EOW)的抗病毒活性。通过将它们用作冷却剂来评估抗病毒剂的预防传播能力。

结果

在 0.25%次氯酸钠或 EOW 的悬液试验中,TCID50/mL 在 5 秒后低于检测限。使用盐水冷却剂,在距离 45 厘米处发现 EAV 引起的 RK13 细胞细胞病变效应,随着距离的增加,感染细胞的数量减少。通过空气采样器,在浓度≤4.2 TCID50/mL 下检测到病毒颗粒。使用两种抗病毒剂作为冷却剂,均未发现 EAV 相关的 RK-13 细胞感染。

结论

我们成功地预测了由于 USS 作用而导致的 EAV 通过飞沫传播。更重要的是,我们通过简单地用次氯酸钠或 EOW 替代 USS 冷却剂来减轻传播。

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