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首页> 外文期刊>Annual review of biophysics >Protein crystallization using microfluidic technologies based on valves, droplets, and SlipChip.
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Protein crystallization using microfluidic technologies based on valves, droplets, and SlipChip.

机译:使用基于阀,液滴和SlipChip的微流体技术进行蛋白质结晶。

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摘要

To obtain protein crystals, researchers must search for conditions in multidimensional chemical space. Empirically, thousands of crystallization experiments are carried out to screen various precipitants at multiple concentrations. Microfluidics can manipulate fluids on a nanoliter scale, and it affects crystallization twofold. First, it miniaturizes the experiments that can currently be done on a larger scale and enables crystallization of proteins that are available only in small amounts. Second, it offers unique experimental approaches that are difficult or impossible to implement on a larger scale. Ongoing development of microfluidic techniques and their integration with protein production, characterization, and in situ diffraction promises to accelerate the progress of structural biology.
机译:为了获得蛋白质晶体,研究人员必须在多维化学空间中寻找条件。根据经验,进行了数千次结晶实验以筛选多种浓度的各种沉淀剂。微流控技术可以在纳升级上处理流体,并且影响结晶度的两倍。首先,它使目前可以大规模进行的实验小型化,并使只能少量使用的蛋白质结晶。其次,它提供了难以或不可能大规模实施的独特实验方法。微流体技术的不断发展及其与蛋白质生产,表征和原位衍射的整合有望加速结构生物学的发展。

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