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Sub-millisecond time-resolved SAXS using a continuous-flow mixer and X-ray microbeam

机译:使用连续流混合器和X射线微束的亚毫秒级时间分辨SAXS

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摘要

Small-angle X-ray scattering (SAXS) is a well established technique to probe the nanoscale structure and interactions in soft matter. It allows one to study the structure of native particles in near physiological environments and to analyze structural changes in response to variations in external conditions. The combination of microfluidics and SAXS provides a powerful tool to investigate dynamic processes on a molecular level with sub-millisecond time resolution. Reaction kinetics in the sub-millisecond time range has been achieved using continuous-flow mixers manufactured using micromachining techniques. The time resolution of these devices has previously been limited, in part, by the X-ray beam sizes delivered by typical SAXS beamlines. These limitations can be overcome using optics to focus X-rays to the micrometer size range providing that beam divergence and photon flux suitable for performing SAXS experiments can be maintained. Such micro-SAXS in combination with microfluidic devices would be an attractive probe for time-resolved studies. Here, the development of a high-duty-cycle scanning microsecond-time-resolution SAXS capability, built around the Kirkpatrick–Baez mirror-based microbeam system at the Biophysics Collaborative Access Team (BioCAT) beamline 18ID at the Advanced Photon Source, Argonne National Laboratory, is reported. A detailed description of the microbeam small-angle-scattering instrument, the turbulent flow mixer, as well as the data acquisition and control and analysis software is provided. Results are presented where this apparatus was used to study the folding of cytochrome c. Future prospects for this technique are discussed.
机译:小角X射线散射(SAXS)是一种成熟的技术,用于探测纳米级结构和软物质中的相互作用。它使人们能够在生理环境附近研究天然颗粒的结构,并分析响应外部条件变化的结构变化。微流体技术和SAXS的结合提供了一个强大的工具,可以以亚毫秒级的时间分辨率在分子水平上研究动态过程。使用微加工技术制造的连续流混合器已经实现了亚毫秒级时间范围内的反应动力学。以前,这些设备的时间分辨率部分受到典型SAXS光束线传递的X射线束大小的限制。使用光学器件将X射线聚焦到微米尺寸范围可以克服这些限制,前提是可以保持适合进行SAXS实验的光束发散和光子通量。这种micro-SAXS与微流控设备的结合将是时间分辨研究的一个有吸引力的探针。在这里,开发了高占空比扫描微秒时间分辨率的SAXS功能,该功能建立在阿贡国家大学高级光子源生物物理合作访问团队(BioCAT)光束线18ID的基于Kirkpatrick-Baez镜的微束系统的基础上实验室,据报道。提供了对微束小角度散射仪,湍流混合器以及数据采集,控制和分析软件的详细描述。在使用该仪器研究细胞色素折叠的过程中给出了结果。讨论了该技术的未来前景。

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