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Electrostatic force microscope for probing surface charges in aqueous solutions.

机译:静电显微镜用于探测水溶液中的表面电荷。

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摘要

A scanning force microscope was converted to an electrostatic force microscope by charging the usually neutral cantilever with phospholipids. The electrostatic force microscope was used to study surface electrostatic charges of samples in aqueous solutions. Lysozymes, DEAE-Sephadex beads, 3-propyltriethoxysilane-treated glass and mica were imaged in water or phosphate buffer with electrostatic force microscopy. The adhesion force measured when a charged probe and oppositely charged specimen interacted was up to 500 times greater than when a bare probe was used. This dramatic increase in measured adhesion force can be attributed to the energy required to break the salt bridges formed between the charged probe and the specimen. The use of phospholipids to functionalize the cantilever tip allows the incorporation of other biomolecules and ligands that can be used as biologically specific tips (e.g., receptors, drugs) for the study of intermolecular interactions.
机译:通过将通常为中性的悬臂装入磷脂,将扫描力显微镜转换为静电力显微镜。静电力显微镜用于研究水溶液中样品的表面静电荷。用静电力显微镜在水或磷酸盐缓冲液中对溶菌酶,DEAE-Sephadex珠,经3-丙基三乙氧基硅烷处理的玻璃和云母成像。带电探针和带相反电荷的样品相互作用时测得的粘附力比使用裸探针时大500倍。所测得的粘附力的急剧增加可归因于破坏带电探针和样品之间形成的盐桥所需的能量。使用磷脂使悬臂尖端功能化允许掺入其他生物分子和配体,这些生物分子和配体可用作生物学上特异性的尖端(例如受体,药物),用于研究分子间的相互作用。

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