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A simple and effective calibration method to determine the accuracy of liquid-handling nano-dispenser devices

机译:一个简单而有效的校准方法来确定液体处理纳米分配器设备的精度

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摘要

The accurate delivery of small volumes is a critical factor in the crystallization of macromolecules as it influences the reproducibility of the screening experiments. Crystallographic screening technologies have made it possible to perform experiments using volumes as low as 50 nl. The accuracy of the dispenser has usually been calibrated by weight measurements. In this work, a simple and inexpensive fluorescence-based calibration method that is sensitive and that can be used to monitor the precision and accuracy of any liquid-handling nano-dispenser device is presented. The results suggest that the protocol described here can be useful to determine volumes ranging from 50 to 300 nl with precision. Therefore, the pipetting of volumes as low as 50 nl can be calibrated periodically to ensure that precision and accuracy are maintained. The suggested calibration protocol can be executed in 6 h per instrument, including the calibration curve, which is the most time-consuming step; the rest can be completed in approximately 2 h.
机译:小体积的准确输送是大分子结晶的关键因素,因为它影响筛选实验的可重复性。晶体学筛选技术使得使用低至50µl的体积进行实验成为可能。分配器的精度通常已通过重量测量进行了校准。在这项工作中,提出了一种简单且廉价的基于荧光的校准方法,该方法灵敏并且可用于监视任何液体处理纳米分配器设备的精度和准确性。结果表明,此处描述的协议可用于精确确定50至300µl的体积。因此,可以定期校准低至50µl的移液,以确保保持精度和准确性。建议的校准方案可以在每台仪器的6?h内执行,包括校准曲线,这是最耗时的步骤。其余的可以在大约2小时内完成。

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