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使用分析型SPLITT分级分离法进行快速扩散系数测量:在蛋白质中的应用

Rapid diffusion coefficient measurements using analytical SPLITT fractionation: application to proteins.

作者信息

Bor Fuh C, Levin S, Giddings J C

机构信息

Department of Chemistry, University of Utah, Salt Lake City 84112.

出版信息

Anal Biochem. 1993 Jan;208(1):80-7. doi: 10.1006/abio.1993.1011.

Abstract

This work reports a new technique for the rapid measurement of diffusion coefficients using a special flow cell called a SPLITT cell. Such SPLITT cells, designed for continuous SPLITT fractionation, utilize differential transport across a thin (approximately 100 microns) ribbonlike lamina flowing through the cell. The liquid stream in the cell is split into two substreams at the outlet. The relative concentration in the two outlet substreams of a dilute component introduced into one of two inlet substreams is mathematically related to the appropriate transport coefficient, in this case the diffusion coefficient D. Thus D can be calculated from measured values of relative outlet concentrations. This approach has been tested using a number of dilute protein solutions. The results at different stream-splitting ratios are reasonably self-consistent and agree with most literature values for D within 5%. This approach provides a simple, rapid, and predictable means for determining the diffusion coefficients of proteins and other substances.

摘要

这项工作报道了一种使用名为SPLITT池的特殊流通池快速测量扩散系数的新技术。这种为连续SPLITT分级分离设计的SPLITT池,利用穿过流经该池的薄(约100微米)带状薄片的差异传输。池中的液流在出口处被分成两个子流。引入两个入口子流之一的稀组分在两个出口子流中的相对浓度在数学上与适当的传输系数相关,在这种情况下是扩散系数D。因此,可以从相对出口浓度的测量值计算出D。该方法已使用多种稀蛋白质溶液进行了测试。不同分流比下的结果相当自洽,并且与大多数文献中D的值在5%以内相符。这种方法为确定蛋白质和其他物质的扩散系数提供了一种简单、快速且可预测的手段。

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