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首页> 外文期刊>Journal of nanoscience and nanotechnology >Nanoscale Biofilm Modification-Method Concerning a Myoglobin/11-MUA Bilayers for Bioelectronic Device
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Nanoscale Biofilm Modification-Method Concerning a Myoglobin/11-MUA Bilayers for Bioelectronic Device

机译:关于用于生物电子设备的肌红蛋白/ 11-MUA双层纳米材料的生物膜修饰方法。

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We developed surface modification tools for the fabrication of a bioelectronic device which consists of a myoglobin monolayer self-assembled on an 11-MUA layer. To utilize a single protein as the active element, it was necessary to reduce protein aggregation on the protein layer in the nanobio electronic device, which was developed in our previous study and shown to display basic biomemory functions. Here, the reduction of myoglobin aggregation was accomplished by using 3-(3-cholamidopropyl) dimethylammonio-1-propanesulfonate (CHAPS) to fabricate a well-defined protein layer on the bioelectronic device. We investigated two different surface modification methods for making well oriented biofilm. The effects of CHAPS on the formation of a myoglobin layer self-assembled on an 11-MUA layer were examined by atomic force microscopy and Raman spectroscopy. The size of the myoglobin aggregates was reduced from 200~250 nm to 10~40 nm depending on treatment method. The sustaining redox property of the CHAPS treated myoglobin layer was examined using cyclic voltammetry. Using these techniques, we found that after surfactant CHAPS treatment, protein aggregation was dramatically reduced and the protein layer still maintained its inherent electrochemical properties.
机译:我们开发了用于制造生物电子设备的表面修饰工具,该工具由在11-MUA层上自组装的肌红蛋白单层组成。为了利用单个蛋白质作为活性元素,有必要减少纳米生物电子设备中蛋白质层上的蛋白质聚集,这是我们先前的研究开发的,显示出基本的生物记忆功能。在这里,肌红蛋白聚集的减少是通过使用3-(3-胆酰胺丙基)二甲基氨-1-丙烷磺酸盐(CHAPS)在生物电子设备上制造清晰的蛋白质层来实现的。我们研究了两种不同的表面改性方法来制备取向良好的生物膜。通过原子力显微镜和拉曼光谱检查了CHAPS对在11-MUA层上自组装的肌红蛋白层形成的影响。根据治疗方法,肌红蛋白聚集体的尺寸从200〜250 nm减小到10〜40 nm。使用循环伏安法检查了CHAPS处理的肌红蛋白层的维持氧化还原特性。使用这些技术,我们发现表面活性剂CHAPS处理后,蛋白质聚集显着减少,蛋白质层仍保持其固有的电化学特性。

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