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微混合技术的应用。

Applications of micromixing technology.

机构信息

Department of Biomedical Engineering, College of Health Science, Korea University, 1-boneji San, Jeongneung-dong, Seongbuk-gu, 136-100, Seoul, Korea.

出版信息

Analyst. 2010 Mar;135(3):460-73. doi: 10.1039/b921430e. Epub 2010 Jan 7.

Abstract

This review presents an application of micromixer technologies, which have driven a number of critical research trends over the past few decades, particularly for chemical and biological fields. Micromixer technologies in this review are categorized according to their applications: (1) chemical applications, including chemical synthesis, polymerization, and extraction; (2) biological applications, including DNA analysis, biological screening enzyme assays, protein folding; and (3) detection/analysis of chemical or biochemical content combined with NMR, FTIR, or Raman spectroscopies. In the chemical application, crystallization, extraction, polymerization, and organic synthesis have been reported, not only for laboratory studies, but also for industrial applications. Microscale techniques are used in chemical synthesis to develop microreactors. In clinical medicine and biological studies, microfluidic systems have been widely applied to the identification of biochemical products, diagnosis, drug discovery, and investigation of disease symptoms. The biological and biochemical applications also include enzyme assays, biological screening assays, cell lysis, protein folding, and biological analytical assays. Nondestructive analytical/detection methods have yielded a number of benefits to chemical and biochemical processes. In this chapter, we introduce analytical methods those are frequently integrated into micromixing technologies, such as NMR, FT-IR, and Raman spectroscopies. From the study of micromixers, we discovered that the Re number and mixing time depends on the specific application, and we clustered micromixers in various applications according to the Re number and mixing performance (mixing time). We expect that this clustering will be helpful in designing of micromixers for specific applications.

摘要

这篇综述介绍了微混合器技术的应用,该技术在过去几十年中推动了许多关键的研究趋势,特别是在化学和生物学领域。本综述中根据其应用将微混合器技术进行了分类:(1)化学应用,包括化学合成、聚合和提取;(2)生物应用,包括 DNA 分析、生物筛选酶分析、蛋白质折叠;(3)与 NMR、FTIR 或拉曼光谱结合的化学或生物化学含量的检测/分析。在化学应用中,不仅在实验室研究中,而且在工业应用中都报道了结晶、提取、聚合和有机合成。微尺度技术用于化学合成以开发微反应器。在临床医学和生物学研究中,微流控系统已广泛应用于生化产物的鉴定、诊断、药物发现和疾病症状的研究。生物和生化应用还包括酶分析、生物筛选分析、细胞裂解、蛋白质折叠和生物分析分析。无损分析/检测方法为化学和生化过程带来了许多好处。在本章中,我们介绍了经常集成到微混合技术中的分析方法,例如 NMR、FT-IR 和拉曼光谱。通过对微混合器的研究,我们发现 Re 数和混合时间取决于特定的应用,并且根据 Re 数和混合性能(混合时间)将微混合器聚类到各种应用中。我们希望这种聚类将有助于为特定应用设计微混合器。

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