Micic M, Chen A, Leblanc R M, Moy V T
Department of Chemistry, University of Miami, Florida, USA.
Scanning. 1999 Nov-Dec;21(6):394-7. doi: 10.1002/sca.4950210606.
Protein-functionalized atomic force microscopy (AFM) tips have been used to investigate the interaction of individual ligand-receptor complexes. Herein we present results from scanning electron microscopy (SEM) studies of protein-functionalized AFM cantilever tips. The goals of this study were (1) to examine the surface morphology of protein-coated AFM tips and (2) to determine the stability of the coated tips. Based on SEM images, we found that bovine serum albumin (BSA) in solution spontaneously adsorbed onto the surface of silicon nitride cantilevers, forming a uniform protein layer over the surface. Additional protein layers deposited over the initial BSA-coated surface did not significantly alter the surface morphology. However, we found that avidin-functionalized tips were contaminated with debris after a series of force measurements with biotinylated agarose beads. The bound debris presumably originated from the transfer of material from the agarose bead. This observation is consistent with the observed deterioration of functional activity as measured in ligand-receptor binding force experiments.
蛋白质功能化原子力显微镜(AFM)探针已被用于研究单个配体-受体复合物的相互作用。在此,我们展示了对蛋白质功能化AFM悬臂探针进行扫描电子显微镜(SEM)研究的结果。本研究的目的是:(1)检查蛋白质包被的AFM探针的表面形态;(2)确定包被探针的稳定性。基于SEM图像,我们发现溶液中的牛血清白蛋白(BSA)自发吸附到氮化硅悬臂的表面,在表面形成一层均匀的蛋白质层。沉积在初始BSA包被表面上的额外蛋白质层并没有显著改变表面形态。然而,我们发现,在用生物素化琼脂糖珠进行一系列力测量后,抗生物素蛋白功能化的探针被碎片污染。结合的碎片大概源自琼脂糖珠上物质的转移。这一观察结果与在配体-受体结合力实验中测得的功能活性下降相一致。