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The Development of an Automated Nano Sampling Handling System for Nanometre Protein Crystallography Experiments

机译:纳米蛋白质晶体学实验的自动纳米采样处理系统的开发

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As the world's synchrotrons and X-FELs endeavour to meet the need to analyse ever-smaller protein crystals, there grows a requirement for a new technique to present nano-dimensional samples to the beam for X-ray diffraction experiments. The work presented here details developmental work to reconfigure the nano tweezer technology developed by Optofluidics (PA, USA) for the trapping of nano dimensional protein crystals for X-ray crystallography experiments. The system in its standard configuration is used to trap nano particles for optical microscopy. It uses silicon nitride laser waveguides that bridge a micro fluidic channel. These waveguides contain 180 nm apertures of enabling the system to use biologically compatible 1.6 micron wavelength laser light to trap nano dimensional biological samples. Using conventional laser tweezers, the wavelength required to trap such nano dimensional samples would destroy them. The system in its optical configuration has trapped protein molecules as small as 10 nanometres.
机译:随着世界同步调节和X-FELS努力满足较小的蛋白质晶体的需要,增加了一种新技术将纳米尺寸样品呈现给X射线衍射实验的光束。此作品在这里提供了重新配置由Optofluidics(PA,USA)开发的纳米镊子技术的开发工作,以捕获纳米尺寸蛋白质晶体进行X射线晶体学实验。其标准配置中的系统用于捕获用于光学显微镜的纳米颗粒。它使用桥梁微流体通道的氮化硅激光波导。这些波导含有180nm孔,使系统能够使用生物相容的1.6微米波长激光来捕获纳米尺寸生物样品。使用传统的激光镊子,捕获这种纳米尺寸样本所需的波长会破坏它们。其光学配置中的系统已被捕获蛋白质分子,小于10纳米。

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