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A continuous-flow capillary mixing method to monitor reactions on the microsecond time scale.

机译:一种连续流毛细管混合方法可在微秒级的时间内监控反应。

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摘要

A continuous-flow capillary mixing apparatus, based on the original design of Regenfuss et al. (Regenfuss, P., R. M. Clegg, M. J. Fulwyler, F. J. Barrantes, and T. M. Jovin. 1985. Rev. Sci. Instrum. 56:283-290), has been developed with significant advances in mixer design, detection method and data analysis. To overcome the problems associated with the free-flowing jet used for observation in the original design (instability, optical artifacts due to scattering, poor definition of the geometry), the solution emerging from the capillary is injected directly into a flow-cell joined to the tip of the outer capillary via a ground-glass joint. The reaction kinetics are followed by measuring fluorescence versus distance downstream from the mixer, using an Hg(Xe) arc lamp for excitation and a digital camera with a UV-sensitized CCD detector for detection. Test reactions involving fluorescent dyes indicate that mixing is completed within 15 micros of its initiation and that the dead time of the measurement is 45 +/- 5 micros, which represents a >30-fold improvement in time resolution over conventional stopped-flow instruments. The high sensitivity and linearity of the CCD camera have been instrumental in obtaining artifact-free kinetic data over the time window from approximately 45 micros to a few milliseconds with signal-to-noise levels comparable to those of conventional methods. The scope of the method is discussed and illustrated with an example of a protein folding reaction.
机译:一种连续流毛细管混合设备,基于Regenfuss等人的原始设计。 (Regenfuss,P.,R.M.Clegg,M.J.Fulwyler,F.J.Barrantes和T.M.Jovin.1985。Rev.Sci.Instrum.56:283-290)已经在混合器设计,检测方法和数据分析方面取得了显着进步。为了克服与原始设计中用于观察的自由流动射流相关的问题(不稳定,由于散射而导致的光学伪影,不良的几何形状定义),将从毛细管中出来的溶液直接注入与之相连的流通池中外部毛细管的尖端通过磨砂玻璃接头。反应动力学之后,使用Hg(Xe)弧光灯进行激发,并使用带有UV敏化CCD检测器的数码相机来测量荧光与混合器下游距离的关系。涉及荧光染料的测试反应表明,混合在启动后的15微米内完成,并且测量的死区时间为45 +/- 5微米,与传统的停流仪器相比,其时间分辨率提高了30倍以上。 CCD摄像机的高灵敏度和线性度有助于在大约45微秒至几毫秒的时间范围内获得无伪像的动力学数据,并且信噪比可与传统方法相比。以蛋白质折叠反应为例讨论和说明了该方法的范围。

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