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Coupling gold nanoparticles to silica nanoparticles through disulfide bonds for glutathione detection

机译:通过二硫键将金纳米颗粒与二氧化硅纳米颗粒偶联,用于谷胱甘肽检测

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Advances in the controlled assembly of nanoscale building blocks have resulted in functional devices which can find applications in electronics, biomedical imaging, drug delivery etc. In this study, novel covalent nanohybrid materials based upon [Ru(bpy)_3]~(2+)-doped silica nanoparticles (SiNPs) and gold nanoparticles (AuNPs), which could be conditioned as OFF-ON probes for glutathione (GSH) detection, were designed and assembled in sequence, with the disulfide bonds as the bridging elements. The structural and optical properties of the nanohybrid architectures were characterized using transmission electron microscopy, UV-vis spectroscopy and fluorescence spectroscopy, respectively. Zeta potential measurements, x-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy were employed to monitor the reaction processes of the SiNPs-S-S-COOH and SiNPs-S-S-AuNPs synthesis. It was found that the covalent nanohybrid architectures were fluorescently dark (OFF state), indicating that SiNPs were effectively quenched by AuNPs. The fluorescence of the OFF-ON probe was resumed (ON state) when the bridge of the disulfide bond was cleaved by reducing reagents such as GSH. This work provides a new platform and strategy for GSH detection using covalent nanohybrid materials.
机译:纳米级构件的可控组装技术的进步导致功能性器件可以在电子,生物医学成像,药物输送等领域找到应用。在这项研究中,基于[Ru(bpy)_3]〜(2+)的新型共价纳米杂化材料以二硫键为桥连元素,设计并组装了可作为谷胱甘肽(GSH)检测的OFF-ON探针的掺杂硅纳米颗粒(SiNPs)和金纳米颗粒(AuNPs)。分别使用透射电子显微镜,紫外可见光谱和荧光光谱表征了纳米杂化结构的结构和光学性质。使用ζ电势测量,X射线光电子能谱和傅里叶变换红外光谱来监测SiNPs-S-S-COOH和SiNPs-S-S-AuNPs合成的反应过程。发现共价纳米杂交结构是荧光暗的(OFF状态),表明SiNP被AuNP有效地淬灭。当二硫键的桥被还原剂(例如GSH)切割时,OFF-ON探针的荧光恢复(ON状态)。这项工作为使用共价纳米杂化材料检测GSH提供了新的平台和策略。

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