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离心微流控芯片上废水中病毒的定量分析

Quantification of Viruses in Wastewater on a Centrifugal Microfluidic Disc.

作者信息

Huang Yen-Hsiang, Jiang Sunny

机构信息

Department of Civil and Environmental Engineering, University of California, Irvine, California 92697, United States.

出版信息

Environ Sci Technol. 2025 Feb 18;59(6):3088-3097. doi: 10.1021/acs.est.4c13718. Epub 2025 Feb 2.

Abstract

Rapid and onsite detection of pathogens in water is a critical first step in preventing the spread of infectious diseases from the environment to humans. However, current microbial monitoring practices are tedious, expensive, and slow. These limitations significantly impede our ability to promptly identify potential risks to public health, leading to delays in implementing the necessary interventions. In this study, we report the development of a portable centrifugal microfluidic disc (CD) that integrates sample concentration, purification, and a droplet digital reverse transcription LAMP (ddRT-LAMP) assay as a lab-on-a-chip system for rapid virus detection in the environment. Coupled with the pseudo- and nonpseudo forces generated during the CD rotation or oscillation, the assay steps for sample purification, concentration, and quantification were completed in less than 1.5 h. The results showed that the on-CD sample preparation procedures are comparable to the traditional in-tube sample preparation assay. Furthermore, the indigenous pepper mild mottle virus (PMMoV) in raw sewage at concentrations ranging from 6.0 × 10 to 2.1 × 10 copies/ml was successfully quantified using the complete on-CD assay, which includes on-CD sample preparation procedures and on-CD ddRT-LAMP. The concentrations of PMMoV detected by the CD assay matched well with those detected by the state-of-the-art virus nucleic acid extraction and ddRT-PCR assay for wastewater and wastewater-spiked environmental water samples, demonstrating the potential of this CD platform for environmental applications.

摘要

快速现场检测水中病原体是预防传染病从环境传播至人类的关键第一步。然而,当前的微生物监测方法繁琐、昂贵且耗时。这些局限性严重阻碍了我们及时识别公共卫生潜在风险的能力,导致在实施必要干预措施时出现延误。在本研究中,我们报告了一种便携式离心微流控盘(CD)的开发,该盘集成了样品浓缩、纯化以及液滴数字逆转录环介导等温扩增(ddRT-LAMP)检测,作为一种用于环境中病毒快速检测的芯片实验室系统。结合CD旋转或振荡过程中产生的伪力和非伪力,样品纯化、浓缩和定量的检测步骤在不到1.5小时内即可完成。结果表明,芯片上的样品制备程序与传统的管内样品制备检测相当。此外,使用完整的芯片上检测方法,包括芯片上样品制备程序和芯片上ddRT-LAMP,成功对原污水中浓度范围为6.0×10至2.1×10拷贝/毫升的本地辣椒轻斑驳病毒(PMMoV)进行了定量。CD检测法检测到的PMMoV浓度与用于废水和加标废水环境水样的最先进病毒核酸提取和ddRT-PCR检测法检测到的浓度非常匹配,证明了该CD平台在环境应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15f3/11841024/b70624ee84f9/es4c13718_0001.jpg

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