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基于热固性油的大规模皮升级液滴阵列用于活细菌的数字计数和动态跟踪。

A large-scale pico-droplet array for viable bacteria digital counting and dynamic tracking based on a thermosetting oil.

机构信息

Research Centre for Analytical Instrumentation, Institute of Cyber-Systems and Control, State Key Laboratory of Industrial Control Technology, Zhejiang University, Hangzhou, Zhejiang Province, 310027, PR China.

College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang Province, 310058, PR China.

出版信息

Analyst. 2022 Jul 12;147(14):3305-3314. doi: 10.1039/d2an00680d.

Abstract

The rapid and accurate detection of viable bacteria is of great importance in food quality monitoring and clinical diagnosis. () is a major pathogenic bacterium, which causes potential threats to food safety and human health. Therefore, rapid and portable methods for preventing outbreaks are needed. Single cell analysis can be performed at the single-cell level, which has great advantages for analysis and diagnosis. Herein, we employed a thermosetting oil to generate a large-scale pico-droplet array for viable bacteria digital counting and dynamic tracking. In this array, the droplets can be solidified without any inducers due to the cross-linking reaction of the hydrosilation of vinyl silicone oil and hydrosilicone oil. Single cells were encapsulated in solidified droplets to form a microcolony. Resazurin was used as a fluorescent indicator to achieve amplification of bacterial growth signals. This method can achieve digital counting of viable cells in 4 h. We achieved real-time monitoring of cell growth and division in droplets. It is rapid, simple, and does not require a pre-enrichment process when compared to the traditional plate counting method. We successfully applied the method for the enumeration of in milk. In conclusion, the thermosetting oil enables the immobilization of droplets to achieve real-time monitoring and digital counting of bacterial growth without impairing the flexibility of droplet microfluidics, and it has the potential to provide dynamic information at high resolution in this process.

摘要

快速准确地检测活菌在食品质量监测和临床诊断中具有重要意义。金黄色葡萄球菌是一种主要的致病菌,它对食品安全和人类健康构成潜在威胁。因此,需要快速便携的方法来预防疫情爆发。单细胞分析可以在单细胞水平上进行,这对于分析和诊断具有很大的优势。在这里,我们采用热固性油生成大规模的皮升级液滴阵列,用于活菌数字计数和动态跟踪。在该阵列中,由于乙烯基硅油和硅氢硅油的氢化交联反应,无需任何诱导剂即可使液滴固化。单细胞被包封在固化的液滴中以形成微菌落。试卤灵被用作荧光指示剂以实现细菌生长信号的放大。该方法可以在 4 小时内实现活菌的数字计数。我们实现了液滴中细胞生长和分裂的实时监测。与传统的平板计数法相比,它快速、简单,并且不需要预富集过程。我们成功地将该方法应用于牛奶中 的计数。总之,热固性油可实现液滴的固定化,从而在不损害液滴微流控灵活性的情况下实现细菌生长的实时监测和数字计数,并有可能在此过程中以高分辨率提供动态信息。

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