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Interfacing enzymes with silicon nanocrystals through the thiol-ene reaction

机译:连接酶与硅纳米晶体通过thiol-ene反应

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This study reports the preparation of functional bioinorganic hybrids, through application of the thiol-ene reaction, that exhibit catalytic activity and photoluminescent properties from enzymes and freestanding silicon nanocrystals. Thermal hydrosilylation of 1,7-octadiene and alkene-terminated poly(ethylene oxide)methyl ether with hydride-terminated silicon nanocrystals afforded nanocrystals functionalized with alkene residues and poly(ethylene oxide) moieties. These silicon nanocrystals were conjugated with representative enzymes through the photochemical thiol-ene reaction to afford bioinorganic hybrids that are dispersible and photostable in buffer, and that exhibit photoluminescence (lambda(max) = 630 nm) and catalytic activity. They were characterized using Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), transmission electron microscopy (TEM), dynamic light scattering analysis (DLS), absorption spectroscopy, steady-state and time-resolved photoluminescence spectroscopy, and pertinent enzyme activity assays. The general derivatization approach presented for interfacing enzymes with biocompatible silicon nanocrystals has far reaching implications for many applications ranging from sensors to therapeutic agents. The bioinorganic hybrids presented herein have potential applications in the chemical detection of nitrophenyl esters and urea. They can also be employed in enzyme-based theranostics as they combine long-lived silicon nanocrystal photoluminescence with substrate-specific enzymatic activity.
机译:本研究报告功能的准备通过应用生物无机的混合动力车thiol-ene反应,表现出催化活动和发光性质酶和独立式的硅纳米晶体。热氢化硅烷化的7-octadiene和alkene-terminated聚(环氧乙烷)甲基与hydride-terminated硅醚纳米晶体提供纳米晶体功能化烯烃残留物和聚(环氧乙烷)半个。共轭酶通过与代表光化学反应thiol-ene负担生物无机的分散和混合动力车photostable在缓冲区,展览光致发光(λ(max) = 630海里)催化活性。傅里叶变换红外光谱(FTIR),x射线光电子能谱(XPS),透射电子显微镜(TEM)、动态光散射分析(DLS)吸收光谱学、稳态和时间分辨光致发光光谱和相关的酶活性测定。衍生化方法提出了接口酶与生物相容性的硅纳米晶体对许多具有深远的影响应用程序从传感器到治疗代理。有潜在的应用在化学吗nitrophenyl酯和尿素的检测。也可以用于enzyme-based开展当他们结合长寿硅纳米晶体光致发光与substrate-specific酶活性。

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