Microfluidic technologies for protein crystallography: advances and applications.

IF 1.8 4区 化学 Q3 CHEMISTRY, ANALYTICAL
Masatoshi Maeki, Akihiko Ishida, Manabu Tokeshi
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引用次数: 0

Abstract

Three-dimensional protein structure determination by X-ray crystallography is essential for understanding biological function and accelerating drug discovery. However, obtaining high-quality protein crystals remains a significant bottleneck. The conventional crystallization methods are often labor-intensive, require large sample volumes, and offer limited control over the crystallization environment. This review summarizes the application of microfluidic technologies to protein crystallography with a focus on their advantages over the conventional crystallization methods. Microfluidic devices enable nanoliter-scale sample handling, precise control over crystallization conditions, and high-throughput screening, addressing major limitations of the conventional approaches. This review introduces various microfluidic platforms, including droplet-based and microwell-based systems, for protein crystallization, crystal growth control, and on-chip X-ray diffraction analysis. The review also covers the use of microfluidics for creating diffusion-controlled crystal growth environments, real-time crystal growth measurement, on-chip X-ray diffraction measurement, and room-temperature X-ray crystallography with automated data processing.

蛋白质晶体学的微流控技术:进展与应用。
利用x射线晶体学测定蛋白质的三维结构对于了解蛋白质的生物学功能和加速药物的发现是至关重要的。然而,获得高质量的蛋白质晶体仍然是一个重要的瓶颈。传统的结晶方法通常是劳动密集型的,需要大量的样品,并且对结晶环境的控制有限。本文综述了微流控技术在蛋白质结晶学中的应用,重点介绍了微流控技术相对于传统结晶方法的优势。微流控装置实现了纳米级样品处理,精确控制结晶条件和高通量筛选,解决了传统方法的主要局限性。本文介绍了各种微流体平台,包括基于液滴和基于微孔的系统,用于蛋白质结晶,晶体生长控制和片上x射线衍射分析。这篇综述还涵盖了微流体在创建扩散控制晶体生长环境、实时晶体生长测量、片上x射线衍射测量和带有自动数据处理的室温x射线晶体学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analytical Sciences
Analytical Sciences 化学-分析化学
CiteScore
2.90
自引率
18.80%
发文量
232
审稿时长
1 months
期刊介绍: Analytical Sciences is an international journal published monthly by The Japan Society for Analytical Chemistry. The journal publishes papers on all aspects of the theory and practice of analytical sciences, including fundamental and applied, inorganic and organic, wet chemical and instrumental methods. This publication is supported in part by the Grant-in-Aid for Publication of Scientific Research Result of the Japanese Ministry of Education, Culture, Sports, Science and Technology.
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