用于微颗粒/细菌在线计数的低成本微流控装置。

IF 3 3区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
Zhen-Yu Xun, Lv Liu, Bai-Chuan Zhang, Liang-Liang Fan, Lu-Wei Zhang, Hong Zhao, Sohail Iqbal, Rana Iqtidar Shakoor, Liang Zhao
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引用次数: 0

摘要

液体介质中微粒/细菌的在线计数在食品安全和生物医学领域具有很大的应用潜力。提出了一种新型的低成本微流控装置,用于液体介质中微颗粒/细菌的在线计数。将逐渐收缩的微通道与粘弹性流体相结合,实现了颗粒/细菌的高效弹性聚焦,将所有颗粒/细菌集中在微通道中心的单一位置,显著提高了计数精度。设计了一种简单的基于光电阻的计数方法,并将其与微通道集成,其中使用低成本的元件包括激光笔,凸透镜,膜片和光电二极管来构建检测光路。通过实验研究了流速、颗粒大小、流体性质和通道结构对颗粒/细菌聚焦的影响,并通过不同粒径的微颗粒和双歧杆菌验证了集成微流控装置的计数能力。该微流控装置结构简单、成本低、操作方便、效率高,适合用于水中塑料微粒的在线计数或食品中细菌菌落形成单元(CFU)的在线计数等商业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Low-Cost Microfluidic Device For the On-Line Counting of Microparticle/Bacteria

On-line counting of the microparticle/bacteria in the liquid medium has great potential in the food safety and biomedical fields. A new low-cost microfluidic device is proposed for the on-line counting of the microparticles/bacteria in the liquid medium. The gradually contracted microchannel and the viscoelastic fluid are combined to achieve the efficient elastic focusing of the particle/bacteria, which significantly improves the counting accuracy by aligning all particles/bacteria in a single position at the center of the microchannel. A simple light resistance-based counting method is designed and integrated with the microchannel, where the low-cost elements including the laser pointer, convex lens, diaphragm, and photodiode, are used to build the optical path of detection. The influence of the flow rate, the particle size, the property of fluid, and the channel structure on the focusing of the particle/bacteria are investigated by the experiment, and the counting ability of the integrated microfluidic device is validated by using different-sized microparticles and the bifidobacterium. With its simple structure, low cost, easy operation, and high efficiency, this microfluidic device is suitable for the commercial applications, such as the on-line counting of the plastic microparticle in water or the colony-forming units (CFU) of bacteria in food.

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来源期刊
ELECTROPHORESIS
ELECTROPHORESIS 生物-分析化学
CiteScore
6.30
自引率
13.80%
发文量
244
审稿时长
1.9 months
期刊介绍: ELECTROPHORESIS is an international journal that publishes original manuscripts on all aspects of electrophoresis, and liquid phase separations (e.g., HPLC, micro- and nano-LC, UHPLC, micro- and nano-fluidics, liquid-phase micro-extractions, etc.). Topics include new or improved analytical and preparative methods, sample preparation, development of theory, and innovative applications of electrophoretic and liquid phase separations methods in the study of nucleic acids, proteins, carbohydrates natural products, pharmaceuticals, food analysis, environmental species and other compounds of importance to the life sciences. Papers in the areas of microfluidics and proteomics, which are not limited to electrophoresis-based methods, will also be accepted for publication. Contributions focused on hyphenated and omics techniques are also of interest. Proteomics is within the scope, if related to its fundamentals and new technical approaches. Proteomics applications are only considered in particular cases. Papers describing the application of standard electrophoretic methods will not be considered. Papers on nanoanalysis intended for publication in ELECTROPHORESIS should focus on one or more of the following topics: • Nanoscale electrokinetics and phenomena related to electric double layer and/or confinement in nano-sized geometry • Single cell and subcellular analysis • Nanosensors and ultrasensitive detection aspects (e.g., involving quantum dots, "nanoelectrodes" or nanospray MS) • Nanoscale/nanopore DNA sequencing (next generation sequencing) • Micro- and nanoscale sample preparation • Nanoparticles and cells analyses by dielectrophoresis • Separation-based analysis using nanoparticles, nanotubes and nanowires.
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