Maeki Masatoshi, Yamaguchi Hiroshi, Tokeshi Manabu, Miyazaki Masaya
Division of Applied Chemistry, Faculty of Engineering, Hokkaido University.
Anal Sci. 2016;32(1):3-9. doi: 10.2116/analsci.32.3.
This review summarizes two microfluidic-based protein crystallization methods, protein crystallization behavior in the microfluidic devices, and their applications for X-ray crystal structure analysis. Microfluidic devices provide many advantages for protein crystallography; they require small sample volumes, provide high-throughput screening, and allow control of the protein crystallization. A droplet-based protein crystallization method is a useful technique for high-throughput screening and the formation of a single crystal without any complicated device fabrication process. Well-based microfluidic platforms also enable effective protein crystallization. This review also summarizes the protein crystal growth behavior in microfluidic devices as, is known from viewpoints of theoretical and experimental approaches. Finally, we introduce applications of microfluidic devices for on-chip crystal structure analysis.
本综述总结了两种基于微流控的蛋白质结晶方法、微流控装置中的蛋白质结晶行为及其在X射线晶体结构分析中的应用。微流控装置为蛋白质晶体学提供了许多优势;它们所需样品体积小,可进行高通量筛选,并能控制蛋白质结晶。基于液滴的蛋白质结晶方法是一种用于高通量筛选和形成单晶的有用技术,无需任何复杂的器件制造过程。基于孔的微流控平台也能实现有效的蛋白质结晶。本综述还从理论和实验方法的角度总结了微流控装置中蛋白质晶体的生长行为。最后,我们介绍了微流控装置在芯片上晶体结构分析中的应用。