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Morphology of protein polymer hybrid films studied by atomic force microscopy and scanning confocal fluorescence microscopy

机译:蛋白质聚合物杂化薄膜的形貌通过原子力显微镜和扫描共聚焦荧光显微镜研究

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Protein-polymer hybrids can act as giant monolayer-forming amphiphiles at the air-water interface. Using biotinylated polystyrene (PSb) as the hydrophobic part and streptavidin (SAv) as a hydrophilic end of the giant amphiphile, monolayer formation and subsequent deposition leads to a well defined solid-supported monolayer, in which the remaining free sites of the polymer-bound SAv are accessible to biotin binding. The deposition conditions are evaluated by investigating the supported films by atomic force microscopy (AFM). Imaging of the PSb without protein reveals uniform monolayer formation. In situ binding of SAv indicates that the biotin is accessible. Deposition of the SAv-polymer hybrid film results primarily in a very similar morphology, indicative of the dominant role of the polymer in the monolayer formation. High resolution AFM revealed a homogeneously dense packing. This is confirmed by combined AFM and scanning confocal fluorescence microscopy (SCFM) on hybrid monolayers containing rhodamine-red-X labeled SAv. The biotin binding capability of the monolayer was assessed by binding of fluorescein labeled biotin and performing dual color excitation and detection. Biotin binding was uniform and homogeneous. Local spectra revealed that the fluorescein was largely quenched by the rhodamine, indicating an efficient energy transfer. (C) 2003 Elsevier B.V. All rights reserved. [References: 44]
机译:蛋白质-聚合物杂化物可以在空气-水界面充当巨大的单层形成两亲物。使用生物素化的聚苯乙烯(PSb)作为两亲性巨分子的疏水部分和链霉亲和素(SAv)作为亲水性末端,单分子层的形成和随后的沉积形成了定义明确的固相支持单分子层,其中聚合物的其余自由位点被结合SAv可与生物素结合。沉积条件通过原子力显微镜(AFM)研究支撑膜来评估。没有蛋白质的PSb成像显示均匀的单层形成。 SAv的原位结合表明生物素是可及的。 SAv-聚合物杂化膜的沉积主要产生非常相似的形态,表明聚合物在单层形成中的主要作用。高分辨率原子力显微镜显示均匀密集的堆积。通过结合的AFM和扫描共焦荧光显微镜(SCFM)在含有罗丹明红X标记的SAv的杂交单层上证实了这一点。通过荧光素标记的生物素的结合并进行双色激发和检测来评估单层的生物素结合能力。生物素结合是均匀和均质的。局部光谱显示,荧光素在很大程度上被若丹明淬灭,表明有效的能量转移。 (C)2003 Elsevier B.V.保留所有权利。 [参考:44]

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