Veerapandian Murugan, Avti Pramod K, Ravichandiran V
National Institute of Pharmaceutical Education and Research, Kolkata 700032, West Bengal, India.
Department of Biophysics, Postgraduate Institute of Medical Education and Research, Sector-12, Chandigarh 160012, India.
Colloids Surf B Biointerfaces. 2017 Jun 1;154:315-320. doi: 10.1016/j.colsurfb.2017.03.029. Epub 2017 Mar 16.
Simple and versatile methodology to synthesize hybrid nanostructures with multi-functionality for device application is advantageous. Herein, we report the synthesis of MoO nanostructures integrated with [Ru(bpy)] and PEGylation to obtain hybrid MoO-[Ru(bpy)] nanostructures. Chemically interacted [Ru(bpy)] provides optical and electrochemical properties to the hybrid structures. PEG enhances the aqueous solubility of the hybrid system. Morphology, chemical structure, optical and electrochemical properties of hybrid nanostructures were studied from electron microscopic, spectroscopic and voltammetric techniques. The synthesized hybrid nanostructures exhibited a metal-to-ligand charge transfer absorbance and emission bands in the range of 450nm and 605nm, respectively. Electrode modified with MoO-[Ru(bpy)] and MoO-[Ru(bpy)]/PEG exhibit improved voltammetric properties than pristine MoO. Confocal cellular imaging supported that these hybrid particles were easily uptaken by endothelial cells with minimal cytotoxic effects. The hybrid nanocomplex displayed unique opto-electrochemical, cellular biocompatibility and imaging features that may be an ideal platform for electrochemical biosensor devices with simultaneous bioimaging function.
合成具有多功能性的用于器件应用的杂化纳米结构的简单通用方法是有利的。在此,我们报告了与[Ru(bpy)]集成并进行聚乙二醇化以获得杂化MoO-[Ru(bpy)]纳米结构的MoO纳米结构的合成。化学相互作用的[Ru(bpy)]为杂化结构提供光学和电化学性质。聚乙二醇增强了杂化体系的水溶性。通过电子显微镜、光谱和伏安技术研究了杂化纳米结构的形态、化学结构、光学和电化学性质。合成的杂化纳米结构分别在450nm和605nm范围内表现出金属到配体的电荷转移吸收和发射带。用MoO-[Ru(bpy)]和MoO-[Ru(bpy)]/PEG修饰的电极比原始MoO表现出更好的伏安性质。共聚焦细胞成像表明这些杂化颗粒很容易被内皮细胞摄取,且细胞毒性作用最小。该杂化纳米复合物显示出独特的光电化学、细胞生物相容性和成像特征,可能是具有同步生物成像功能的电化学生物传感器器件的理想平台。