School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, People's Republic of China.
Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201800, People's Republic of China.
J Synchrotron Radiat. 2023 Mar 1;30(Pt 2):347-358. doi: 10.1107/S1600577523000462. Epub 2023 Feb 15.
There is an increasing demand for simple and efficient sample delivery technology to match the rapid development of serial crystallography and its wide application in analyzing the structural dynamics of biological macromolecules. Here, a microfluidic rotating-target device is presented, capable of three-degrees-of-freedom motion, including two rotational degrees of freedom and one translational degree of freedom, for sample delivery. Lysozyme crystals were used as a test model with this device to collect serial synchrotron crystallography data and the device was found to be convenient and useful. This device enables in situ diffraction from crystals in a microfluidic channel without the need for crystal harvesting. The circular motion ensures that the delivery speed can be adjusted over a wide range, showing its good compatibility with different light sources. Moreover, the three-degrees-of-freedom motion guarantees the full utilization of crystals. Hence, sample consumption is greatly reduced, and only 0.1 mg of protein is consumed in collecting a complete dataset.
目前,人们对简单高效的样品传输技术的需求日益增长,以适应连续结晶学的快速发展及其在分析生物大分子结构动力学方面的广泛应用。在此,我们提出了一种微流控旋转靶装置,该装置可实现三维运动,包括两个旋转自由度和一个平移自由度,用于样品传输。使用该装置对溶菌酶晶体进行了连续同步辐射晶体学数据收集的测试,结果表明该装置方便且实用。该装置可实现在微流道内原位对晶体进行衍射,无需晶体收获。这种圆周运动确保了传输速度可以在很宽的范围内进行调整,表明其与不同光源具有良好的兼容性。此外,三维运动保证了晶体的充分利用,从而大大减少了样品的消耗,仅用 0.1mg 蛋白质即可收集完整的数据集。