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Rapid Microfluidic Mixing and Liquid Jets for Studying Biomolecular Chemical Dynamics

机译:快速微流体混合和液体射流研究生物分子化学动力学

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摘要

X-ray Free-Electron Lasers (XFELs) offer a unique opportunity to study the structural dynamics of proteins on a femtosecond time-scale. To realize the full potential of XFEL sources for studying time-resolved biomolecular processes however, requires the optimization and development of devices that can both act as a trigger and a delivery mechanism for the system of interest. Here we present numerical simulations and actual devices exploring the conditions required for the development of successful mixing and injection devices for tracking the molecular dynamics of proteins in solution on micro to nanosecond timescales using XFELs. The mechanism for combining reagents employs a threefold combination of pico-liter volumes, lamination and serpentine mixing. Focusing and delivering the sample in solution is achieved using the Gas Dynamic Virtual Nozzle (GDVN), which was specifically developed to produce a micrometer diameter, in-vacuum liquid jet. We explore the influence of parameters such as flow rate and gas pressure on the mixing time and jet stability, and explore the formation of rapid homogeneously mixed jets for 'mix-and-inject' liquid scattering experiments at Synchrotron and XFEL facilities.
机译:X射线自由电子激光(XFEL)提供了独特的机会,可以在飞秒的时间尺度上研究蛋白质的结构动力学。为了充分利用XFEL来源来研究时间分辨的生物分子过程,需要对设备进行优化和开发,这些设备既可以充当目标系统的触发机制,又可以充当目标系统的交付机制。在这里,我们提供了数值模拟和实际设备,这些设备探索了开发成功的混合和注射设备所需的条件,这些设备可以使用XFEL在微纳秒级的时间内跟踪溶液中蛋白质的分子动力学。组合试剂的机制采用皮微升体积,层压和蛇形混合的三重组合。气体动态虚拟喷嘴(GDVN)可以实现溶液中样品的聚焦和输送,该喷嘴是专门为产生微米级直径的真空液体射流而开发的。我们探索了流速和气压等参数对混合时间和射流稳定性的影响,并探索了在Synchrotron和XFEL设施进行“混合并注入”液体散射实验的快速均匀混合射流的形成。

著录项

  • 来源
    《Nanophotonics Australasia 2017》|2017年|1045648.1-1045648.8|共8页
  • 会议地点 Melbourne(AU)
  • 作者

    Daniel Langley; Brian Abbey;

  • 作者单位

    ARC Centre of Excellence in Advanced Molecular Imaging, Department of Chemistry and Physics, La Trobe University, Bundoora, Victoria 3086, Australia,Department of Telecommunications, Electrical, Robotics and Biomedical Engineering Swinburne University of Technology, Hawthorn, Victoria 3122, Australia;

    ARC Centre of Excellence in Advanced Molecular Imaging, Department of Chemistry and Physics, La Trobe University, Bundoora, Victoria 3086, Australia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    x-ray free electron lasers; microfluidic mixers; gas-dynamic virtual nozzle; numerical modelling;

    机译:X射线自由电子激光器;微流体混合器;气动虚拟喷嘴数值模拟;
  • 入库时间 2022-08-26 14:33:03

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