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Ordered nano-structure of a stamped self-organized protein layer on a HOPG surface using a HFB carrier

机译:使用HFB载体在HOpG表面上的冲压自组织蛋白质层的有序纳米结构

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摘要

A groundbreaking method for ordered molecular layer preparation on a solid surface employing the drop-stamp method has been developed by us taking advantage of the characteristics of the HFB molecule as a self-organizer/adsorption carrier. It is a smart method which can be used to prepare a self-organized protein layer on a solid surface without unspecific adsorption or defects. In our previous report, we clarified the self-organizing nature of HFB-tagged protein molecules on a surface of a solution droplet. In this report, a protein layer was prepared on a HOPG surface by using the drop-stamp method with a maltose binding protein (MBP)-tagged HFBII molecule. The structure of the stamped protein layer was investigated using frequency modulation atomic force microscopy (FM-AFM) in a liquid condition. The FM-AFM images show that the drop-stamp method can prepare an ordered protein layer on a solid surface smartly. The drop-stamp method using a HFB carrier is a practical method which can be used to prepare an ordered protein layer on a solid substrate surface without unspecific adsorption defects. © 2011 Elsevier B.V.
机译:我们利用HFB分子作为自组织剂/吸附载体的特性,开发了一种采用滴印法在固体表面上有序制备分子层的突破性方法。这是一种聪明的方法,可用于在固体表面上制备自组织蛋白质层,而不会产生非特异性吸附或缺陷。在我们以前的报告中,我们阐明了溶液液滴表面上带有HFB标签的蛋白质分子的自组织性质。在此报告中,通过使用带有麦芽糖结合蛋白(MBP)标记的HFBII分子的滴印法在HOPG表面上制备了蛋白质层。在液体条件下,使用调频原子力显微镜(FM-AFM)研究了印记蛋白层的结构。 FM-AFM图像显示,滴印法可以在固体表面上智能地制备有序的蛋白质层。使用HFB载体的滴印法是一种实用的方法,可用于在固体基质表面上制备有序蛋白层而没有非特异性吸附缺陷。 ©2011 Elsevier B.V.

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