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一种通过测量边界扩展来快速测定扩散系数的自动化方法。

An automated method for rapid determination of diffusion coefficients via measurements of boundary spreading.

作者信息

Muramatsu N, Minton A P

机构信息

Section on Pharmacology, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Anal Biochem. 1988 Feb 1;168(2):345-51. doi: 10.1016/0003-2697(88)90328-4.

Abstract

The use of a simple device by which a layer of solvent may be deposited onto a solution of an optically absorbing solute in a cylindrical quartz tube, without substantial mixing of solution and solvent, is described. The spreading of the boundary thus formed may be monitored as a function of time using an automated absorbance scanning device previously described [A. K. Attri and A. P. Minton (1983) Anal. Biochem. 133, 142-152]. A semiautomatic procedure for determining the diffusion coefficient from the time dependence of the shape of the boundary is described and is particularly well-suited for real-time data analysis with a laboratory microcomputer. The diffusion coefficients of several proteins have been measured using the technique reported, and the results are generally in good agreement with values reported in the literature. The feasibility of using this technique in combination with a previously described method for measuring the sedimentation coefficient [A. K. Attri and A. P. Minton (1984) Anal. Biochem. 136, 407-415] to rapidly determine the molecular weight of a protein is established.

摘要

本文描述了一种简单装置的使用方法,通过该装置可将一层溶剂沉积到圆柱形石英管中光吸收溶质的溶液上,而溶液和溶剂之间不会发生大量混合。由此形成的边界的扩展情况可使用先前描述的自动吸光度扫描装置 [A. K. 阿特里和A. P. 明顿(1983年),《分析生物化学》133卷,第142 - 152页] 作为时间的函数进行监测。本文还描述了一种根据边界形状随时间的变化来确定扩散系数的半自动程序,该程序特别适合使用实验室微型计算机进行实时数据分析。使用所报道的技术测量了几种蛋白质的扩散系数,结果与文献中报道的值总体上吻合良好。确立了将该技术与先前描述的测量沉降系数的方法 [A. K. 阿特里和A. P. 明顿(1984年),《分析生物化学》136卷,第407 - 415页] 相结合以快速测定蛋白质分子量的可行性。

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