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用于凝胶沉降平衡实验的改进实验装置。第2部分:技术进展。

A modified experimental setup for sedimentation equilibrium experiments with gels. Part 2: Technical developments.

作者信息

Cölfen H, Borchard W

机构信息

Angewandte Physikalische Chemie, Universität-GH-Duisburg, Germany.

出版信息

Anal Biochem. 1994 Jun;219(2):321-34. doi: 10.1006/abio.1994.1272.

Abstract

This part of the paper trilogy describes technical developments for an efficient experimental setup to investigate gels with equilibrium analytical ultracentrifugation. New 10-channel centerpieces for the Schlieren optics, a new programmable multiplexer, a modified Schlieren optical system, and a photo pickup with impulse transformer are introduced as major developments. Also, some new centerpieces suitable for equilibrium experiments with solutions using the Rayleigh interference and the uv-absorption optics are presented. These centerpieces allow the investigation of 10, 12, or even 26 samples per centerpiece. The problem to find suitable materials for cell centerpieces and windows in the case of adhering samples is discussed for the system gelatin/water. A phase volume calculation for circular sample channels as a correction for the case of broadened menisci is presented. The method described allows an accurate measurement of up to 70 samples simultaneously in an equilibrium experiment if the 8-hole rotor presented in part 1 of the trilogy is used. The number of samples is sufficient to characterize a gel/solvent system in the experimentally accessible range under identical conditions, which is not possible by means of any of the methods known before. All parts described are also applicable for the investigation of solutions.

摘要

本论文三部曲的这一部分描述了用于通过平衡分析超速离心研究凝胶的高效实验装置的技术发展。介绍了用于纹影光学的新型10通道中心部件、新型可编程多路复用器、改进的纹影光学系统以及带有脉冲变压器的光电传感器作为主要发展成果。此外,还展示了一些适用于使用瑞利干涉和紫外吸收光学对溶液进行平衡实验的新型中心部件。这些中心部件允许每个中心部件研究10、12甚至26个样品。针对明胶/水系统,讨论了在样品附着情况下为细胞中心部件和窗口寻找合适材料的问题。给出了圆形样品通道的相体积计算,作为对弯月面变宽情况的校正。如果使用三部曲第一部分中介绍的8孔转子,所描述的方法允许在平衡实验中同时精确测量多达70个样品。样品数量足以在相同条件下在实验可及范围内表征凝胶/溶剂系统,这是以前已知的任何方法都无法做到的。所描述的所有部件也适用于溶液的研究。

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