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Biological and chemical decoration of peptide nanostructures via biotin-avidin interactions

机译:通过生物素-亲和素相互作用对肽纳米结构进行生物和化学修饰

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Novel architectures with nanometric dimensions hold an immense promise as building blocks for future nanotechnological applications. Biological nanostructures are of special interest due to their biocompatibility and because they allow the utilization of biochemical recognition interfaces. The ability to decorate bio-nanostructures with functional groups is highly important in order to utilize them in several applications including ultrasensitive sensors, drug delivery systems, and tissue engineering. Peptide-based nanostructures have a distinct advantage over other assemblies because they can be easily modified with chemical and biological elements. Aromatic dipeptide nanotubes (ADNT) are formed by the self-assembly of a very simple building block, the cliphenylalanine peptide. These nanotubes have remarkable chemical and mechanical properties and their utilization in various applications has previously been demonstrated. Here we report on the chemical modification of ADNT with biotin moieties, in order to enable the selective decoration of the tubes with avidin-labeled species. First, ADNT were prepared in aqueous solution by self-assembly of the dipeptide building blocks. Next, they were modified using N-hydroxysuccinimido-biotin. The level of biotinylation was assessed by the interaction of the tubes with gold-labeled strepavidin and ultrastructural analysis by electron microscopy. The ability of the modified assemblies to serve as a generic functional platform was demonstrated by avidin-mediated conjugation. Avidin was added as a molecular linker to allow the decoration with biotin-labeled quantum dots. The efficient decoration was again probed by the imaging of the modified tubes using laser confocal microscopy. Taken together, we demonstrated the ability to decorate ADNT using a generic avidin-biotin adaptor. This decoration should lead to the integration and utilization of the tubes in various applications.
机译:具有纳米尺寸的新型体系结构有望成为未来纳米技术应用的基础。由于生物纳米结构具有生物相容性,并且可以利用生物化学识别界面,因此生物纳米结构受到特别关注。为了在许多应用中利用它们,包括超灵敏传感器,药物输送系统和组织工程,利用官能团修饰生物纳米结构的能力非常重要。基于肽的纳米结构相对于其他组件具有明显的优势,因为它们很容易被化学和生物元素修饰。芳香族二肽纳米管(ADNT)是通过非常简单的构件cliphenyl丙氨酸肽的自组装形成的。这些纳米管具有显着的化学和机械性能,并且先前已经证明了它们在各种应用中的利用。在这里,我们报告了生物素部分对ADNT的化学修饰,以便能够用抗生物素蛋白标记的物种选择性装饰试管。首先,通过自组装二肽结构单元在水溶液中制备ADNT。接下来,使用N-羟基琥珀酰亚胺基-生物素对其进行修饰。通过管与金标记的抗生蛋白链菌素的相互作用和通过电子显微镜的超微结构分析来评估生物素化水平。亲和素介导的缀合证明了修饰的组件充当通用功能平台的能力。加入抗生物素蛋白作为分子接头,以用生物素标记的量子点修饰。通过使用激光共聚焦显微镜对改性管成像,再次探测了有效的装饰。两者合计,我们展示了使用通用的抗生物素蛋白-生物素适配器修饰ADNT的能力。这种装饰应导致管在各种应用中的集成和利用。

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