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电场中单个分子的布朗运动。

Brownian motion of single molecules in electric fields.

作者信息

Rigler Rudolf

机构信息

Department of Medical Biophysics, Karolinska Institutet, Stockholm, Sweden.

出版信息

Electrophoresis. 2002 Mar;23(5):805-8. doi: 10.1002/1522-2683(200203)23:5<805::AID-ELPS805>3.0.CO;2-#.

Abstract

The behavior of negatively charged single rhodamine-labeled molecules excited to fluorescence in confocal volume elements has been investigated in oscillating voltage gradients between 1 and 15 kV/cm. The effective charge of rhodamin labeled deoxy-uridine triphosphate (Rh-dUTP) is dependent on the field strength applied and likely is due to differences in the screening by counter ions. It can be shown that the attractive forces generated by an oscillating dipole can increase the concentration of Rh-dUTP by a factor 2. Likewise a substantial increase of concentration can be obtained for Rh-labeled DNA molecules when linear voltage gradients are applied. The importance for diagnostic analysis at the single molecule level is discussed.

摘要

已对在1至15 kV/cm的振荡电压梯度中被激发至荧光的带负电荷的单个罗丹明标记分子在共聚焦体积元中的行为进行了研究。罗丹明标记的脱氧尿苷三磷酸(Rh-dUTP)的有效电荷取决于所施加的场强,这可能是由于抗衡离子的屏蔽差异所致。可以证明,振荡偶极子产生的吸引力可使Rh-dUTP的浓度增加两倍。同样,当施加线性电压梯度时,Rh标记的DNA分子的浓度也会大幅增加。文中讨论了在单分子水平进行诊断分析的重要性。

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