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磷酸化放大同步液滴微流控技术使细菌生长动力学实时监测更为敏感。

Phosphorylation-amplified synchronized droplet microfluidics sensitizes bacterial growth kinetic real-time monitoring.

机构信息

Pillar of Engineering Product Development, Singapore University of Technology and Design, 8 Somapah Road, Singapore, 487372, Singapore.

Joint Key Laboratory of the Ministry of Education, Institute of Applied Physics and Materials Engineering, University of Macau, Avenida da Universidade, Taipa, Macau, 999078, China.

出版信息

Biosens Bioelectron. 2024 Sep 1;259:116397. doi: 10.1016/j.bios.2024.116397. Epub 2024 May 16.

Abstract

The necessity for rapid and accurate bacterial growth monitoring is imperative across various domains, including healthcare and environmental safety. We introduce the self-synchronized droplet-amplified electrical screening cytometry (SYNC) system, a novel meld of droplet microfluidics and electrochemical amplification tailored for precise bacterial growth kinetic monitoring. SYNC encapsulates single bacteria in picolitre droplets, enabling real-time, fluorescence-free electrochemical monitoring. A specially devised phosphorylation-amplified culture medium translates bacterial metabolic activity into discernible electrical impedance changes. The dual-channel design and a rail-based structure in SYNC facilitate parallel screening and self-synchronization of droplets, addressing the limitations of conventional impedance cytometry. SYNC showcases a 5-fold enhancement in detection sensitivity and reduces 50% of the detection time compared to traditional approaches. Notably, SYNC is pioneering in providing exact initial bacterial concentrations, achieve to 10 bacteria/ml, a capability unmatched by existing real-time techniques measuring electrochemical variations. Along with its robust performance, this earmarks SYNC as a powerful tool for applications such as antibiotic susceptibility testing, food quality monitoring, and real-time water bacteria monitoring, paving the way for enhanced microbial process management and infection control.

摘要

快速准确的细菌生长监测在医疗保健和环境安全等各个领域都是必要的。我们引入了自同步液滴扩增电化筛选细胞仪(SYNC)系统,这是一种新颖的液滴微流控和电化放大技术的融合,专门用于精确的细菌生长动力学监测。SYNC 将单个细菌封装在皮升级别的液滴中,实现实时、无荧光的电化监测。特别设计的磷酸化扩增培养基将细菌的代谢活性转化为可辨别的电阻抗变化。SYNC 的双通道设计和基于轨道的结构促进了液滴的平行筛选和自同步,解决了传统阻抗细胞仪的局限性。SYNC 的检测灵敏度提高了 5 倍,检测时间减少了 50%,相比传统方法有了显著的改进。值得注意的是,SYNC 是首个能够精确提供初始细菌浓度(低至 10 个细菌/ml)的技术,这是现有测量电化变化的实时技术所无法实现的。除了其强大的性能,SYNC 还为抗生素药敏测试、食品质量监测和实时水细菌监测等应用提供了一种强大的工具,为增强微生物过程管理和感染控制铺平了道路。

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