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首页> 外文期刊>Chemistry - A European Journal >Nanoscale Biomolecular Structures on Self-Assembled Monolayers Generated from Modular Pegylated Disulfides
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Nanoscale Biomolecular Structures on Self-Assembled Monolayers Generated from Modular Pegylated Disulfides

机译:模块化聚乙二醇化二硫化物产生的自组装单分子膜上的纳米级生物分子结构。

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摘要

A solid-phase synthetic strategy was developed that uses modular building blocks to prepare symmetric oligo(ethylene glycol)-terminated disulfides with a variety of lengths and terminal functionalities. The modular disulfides, composed of alkyl amino groups linked by an amide group to oligoethylene chains were used to generate self-assembled monolayers (SAMs), which were characterised to determine their applicability for biomolecular applications. X-ray photoelectron spectroscopy (XPS) of the SAMs obtained from these molecules demonstrated improved stability towards displacement by 16-hexadecanethiol, while surface plasmon resonance (SPR) analyses of SAMs prepared with the hydroxy-terminated oligoethylene disulfide showed equal resistance to non-specific protein adsorption in comparison to 11-mercaptoundecyl tri(ethylene glycol). SAMs made from these adsorbates were amenable to nanoscale patterning by scanning near-field photolithography (SNP), facilitating the fabrication of nanopatterned, protein-functionalised surfaces. Such SAMs may be further developed for bionanotechnology applications such as the fabrication of nanoscale biological arrays and sensor devices.
机译:开发了一种固相合成策略,该策略使用模块化构件来制备具有各种长度和末端官能度的对称寡聚(乙二醇)封端的二硫化物。模块化的二硫键由酰胺基连接至寡乙烯链的烷基氨基组成,用于生成自组装单分子膜(SAMs),其特征在于可确定其在生物分子应用中的适用性。从这些分子获得的SAM的X射线光电子能谱(XPS)表现出对16-十六烷硫醇置换的改善的稳定性,而用羟基封端的低聚亚乙基二硫化物制备的SAM的表面等离振子共振(SPR)分析显示对非特异性的抗性相同与11-巯基三(三乙二醇)相比,蛋白质吸附更强。由这些吸附物制得的SAM可以通过扫描近场光刻(SNP)进行纳米级图案化,从而有助于纳米级图案化,蛋白质功能化表面的制造。这样的SAM可以被进一步开发用于生物纳米技术应用,例如纳米级生物阵列和传感器装置的制造。

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