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Increasing the throughput of crystallization condition screens: Challenges and pitfalls of acoustic dispensing systems

机译:增加结晶条件筛的通量:声点胶系统的挑战和陷阱

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摘要

Advances in contactless acoustic liquid transfer technologies have unlocked opportunities to substantially increase the throughput of crystallization screens and decrease the consumption of reagents and consumables. Acoustic energy transfer enables crystallization experiments to be set up precisely and rapidly on a nanoliter scale. Nonetheless, adapting acoustic transfer methods to a diverse range of crystallization conditions and their physicochemical idiosyncrasies remains a major bottleneck for true universality of this technique. Even though the reagent limitations still remain an issue, we present a straightforward protocol for setting up crystallization experiments by acoustic transfer using a Labcyte Echo 550 instrument, with a focus on the technical limitations of this method, including reagent compatibilities, spatial resolution and downscaling limits.?Set up crystallization screens in a small scale with reliable drop volumes as low as 50?nl?Overview of commonly used crystallographic screen compatibility with acoustic dispensing?Comparison of instrument calibrations and settings and its effects on error rate and screen reproducibility.
机译:非接触声学液体转移技术的进步为大幅增加结晶筛的通量并减少试剂和消耗品的消耗开辟了机会。声能传递使结晶实验得以精确,快速地建立在纳升级。尽管如此,使声传递方法适应各种结晶条件及其理化特性仍是该技术真正普及的主要瓶颈。即使试剂的局限性仍然是一个问题,我们还是提出了一个简单的协议,用于通过使用Labcyte Echo 550仪器进行声学转移来进行结晶实验的设置,重点是该方法的技术局限性,包括试剂的相容性,空间分辨率和缩小比例的限制。?以小巧的尺寸设置结晶筛,滴落量低至50?nl。概述常用的结晶筛与声点胶的兼容性?仪器校准和设置的比较及其对错误率和筛网再现性的影响。

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