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稀琼脂糖溶液的电双折射

Electric birefringence of dilute agarose solutions.

作者信息

Stellwagen N C, Stellwagen D

机构信息

Department of Biochemistry, University of Iowa, Iowa City 52242.

出版信息

J Biomol Struct Dyn. 1990 Dec;8(3):583-600. doi: 10.1080/07391102.1990.10507830.

Abstract

The technique of transient electric birefringence was used to investigate the orientation of agarose solutions in pulsed electric fields. If the agarose was dissolved in deionized water, the sign of the birefringence was positive when the electric field was small, indicating that the agarose molecules were orienting parallel to the electric field lines. The decay of the birefringence was rapid, consistent with the orientation of individual agarose helices. The amplitude of the birefringence, but not the birefringence decay times, increased as the agarose solution aged, suggesting that the helices formed slowly from the sol state. Increasing the amplitude or duration of the pulsed electric field caused additional negative, and then positive, birefringence signals to appear, characterized by much slower rise and decay times, consistent with the formation of aggregates. The slowest decay times ranged from 7.5-9.0 s, suggesting that the aggregates were several microns in size. When agarose was dissolved in dilute Tris buffer instead of deionized water, the fast positive birefringence signal was not observed, suggesting that individual helices were not present in solutions containing dilute buffer.

摘要

采用瞬态电双折射技术研究了脉冲电场中琼脂糖溶液的取向。如果将琼脂糖溶解在去离子水中,当电场较小时,双折射的符号为正,这表明琼脂糖分子沿电场线方向排列。双折射的衰减很快,这与单个琼脂糖螺旋的取向一致。随着琼脂糖溶液老化,双折射的幅度增加,但双折射衰减时间不变,这表明螺旋从溶胶状态缓慢形成。增加脉冲电场的幅度或持续时间会导致额外的负双折射信号出现,然后是正双折射信号,其特征是上升和衰减时间要慢得多,这与聚集体的形成一致。最慢的衰减时间在7.5 - 9.0秒之间,这表明聚集体的尺寸有几微米。当将琼脂糖溶解在稀Tris缓冲液而非去离子水中时,未观察到快速的正双折射信号,这表明含有稀缓冲液的溶液中不存在单个螺旋。

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