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支撑脂质双层膜的滴定力显微镜技术。

Titration force microscopy on supported lipid bilayers.

作者信息

Garcia-Manyes Sergi, Gorostiza Pau, Sanz Fausto

机构信息

Department of Physical Chemistry, Universitat de Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.

出版信息

Anal Chem. 2006 Jan 1;78(1):61-70. doi: 10.1021/ac0510437.

Abstract

The use of chemically modified atomic force microscopy (AFM) probes allows us to measure the surface charges of supported planar lipid bilayers with high sensitivity through the force spectroscopy operation mode. By controlling the chemistry of the tip, we can perform a classical analytical chemistry titration where the titration agent is a weak acid (attached to the AFM tip) with the particularity of being performed in surface rather than in solution and, especially, at the nanometric scale. Thus, the AFM tip acts as a real "nanosensor". The approaching curves of the force plots reveal that electrostatic interactions between the tip and the supported membrane play a key role. Besides, the plot of the adhesion force (measured from the retracting curve of the force plots) versus pH displays a nonsigmoidal shape with a peak in the adhesion force attributed to high-energy hydrogen bonds. One of these peaks corresponds to the pKa of the surface under study and the other to the pKa of the titrating probe attached to the tip.

摘要

使用化学修饰的原子力显微镜(AFM)探针,使我们能够通过力谱操作模式高灵敏度地测量支撑平面脂质双层的表面电荷。通过控制探针的化学性质,我们可以进行经典的分析化学滴定,其中滴定剂是一种弱酸(附着在AFM探针上),其特殊之处在于滴定是在表面而非溶液中进行,尤其是在纳米尺度上。因此,AFM探针充当了一个真正的“纳米传感器”。力曲线的接近曲线表明,探针与支撑膜之间的静电相互作用起着关键作用。此外,粘附力(从力曲线的回缩曲线测量)与pH值的关系图呈现出非S形,粘附力峰值归因于高能氢键。这些峰值之一对应于所研究表面的pKa,另一个对应于附着在探针上的滴定探针的pKa。

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