Castillo Jaime, Tanzi Simone, Dimaki Maria, Svendsen Winnie
DTU-Nanotech, Department of Micro- and Nanotechnology, Technical University of Denmark, Lyngby, Denmark.
Electrophoresis. 2008 Dec;29(24):5026-32. doi: 10.1002/elps.200800260.
Self-assembled amyloid peptide nanotubes (SAPNT) were manipulated and immobilized using dielectrophoresis. Micro-patterned electrodes of Au were fabricated by photolithography and lifted off on a silicon dioxide layer. SAPNT were manipulated by adjusting the amplitude and frequency of the applied voltage. The immobilized SAPNT were evaluated by SEM and atomic force microscopy. The conductivity of the immobilized SAPNT was studied by I-V characterization, for both single SAPNT and bundles. This work illustrates a way to manipulate and integrate biological nanostructures into novel bio-nanoassemblies with concrete applications, such as field-effect transistors, microprobes, microarrays, and biosensing devices.
利用介电泳对自组装淀粉样肽纳米管(SAPNT)进行操控和固定。通过光刻技术在二氧化硅层上制备金微图案电极,并采用剥离工艺。通过调节施加电压的幅度和频率来操控SAPNT。利用扫描电子显微镜(SEM)和原子力显微镜对固定后的SAPNT进行评估。通过电流-电压(I-V)特性研究了单个SAPNT和束状SAPNT固定后的导电性。这项工作展示了一种将生物纳米结构操控并整合到具有具体应用的新型生物纳米组件中的方法,例如场效应晶体管、微探针、微阵列和生物传感装置。