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Precise Manipulation and Patterning of Protein Crystals for Macromolecular Crystallography using Surface Acoustic Waves

机译:使用表面声波对高分子晶体进行精确操纵和蛋白质晶体构图

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摘要

Advances in modern X-ray sources and detector technology have made it possible for crystallographers to collect usable data on crystals of only a few micrometers or less in size. Despite these developments, sample handling techniques have significantly lagged behind and often prevent the full realization of current beamline capabilities. In order to address this shortcoming we have developed a surface acoustic wave-based method for manipulating and patterning crystals. This method, which does not damage the fragile protein crystals, can precisely manipulate and pattern micrometer and sub-micrometer sized crystals for data collection and screening. The technique is robust, inexpensive, and easy to implement. This method not only promises to significantly increase efficiency and throughput of both conventional and serial crystallography experiments, but also will make it possible to collect data on samples that were previously intractable.
机译:现代X射线源和检测器技术的进步使结晶学家有可能在尺寸仅为几微米或更小的晶体上收集有用的数据。尽管取得了这些进展,但样品处理技术仍明显落后,并经常阻碍了当前光束线功能的完全实现。为了解决这个缺点,我们开发了一种基于声表面波的方法来处理和构图晶体。这种方法不会损坏易碎的蛋白质晶体,可以精确地操纵和图案化微米和亚微米大小的晶体,以进行数据收集和筛选。该技术是鲁棒的,廉价的并且易于实施。该方法不仅有望显着提高常规和串行晶体学实验的效率和通量,而且将有可能收集以前难以处理的样品数据。

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