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One-step shell polymerization of inorganic nanoparticles and their applications in SERSonlinear optical imaging drug delivery and catalysis

机译:无机纳米粒子的一步式壳聚合及其在SERS /非线性光学成像药物递送和催化中的应用

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摘要

Surface functionalized nanoparticles have found their applications in several fields including biophotonics, nanobiomedicine, biosensing, drug delivery, and catalysis. Quite often, the nanoparticle surfaces must be post-coated with organic or inorganic layers during the synthesis before use. This work reports a generally one-pot synthesis method for the preparation of various inorganic-organic core-shell nanostructures (Au@polymer, Ag@polymer, Cu@polymer, Fe3O4@polymer, and TiO2@polymer), which led to new optical, magnetic, and catalytic applications. This green synthesis involved reacting inorganic precursors and poly(styrene-alt-maleic acid). The polystyrene blocks separated from the external aqueous environment acting as a hydrophobic depot for aromatic drugs and thus illustrated the integration of functional nanoobjects for drug delivery. Among these nanocomposites, the Au@polymer nanoparticles with good biocompatibility exhibited shell-dependent signal enhancement in the surface plasmon resonance shift, nonlinear fluorescence, and surface-enhanced Raman scattering properties. These unique optical properties were used for dual-modality imaging on the delivery of the aromatic photosensitizer for photodynamic therapy to HeLa cells.
机译:表面官能化的纳米颗粒已在生物光子学,纳米生物医学,生物传感,药物递送和催化等多个领域中得到了应用。通常,在使用前必须在合成过程中用有机或无机层对纳米颗粒表面进行后涂层。这项工作报告了一种通用的一锅法合成方法,用于制备各种无机-有机核-壳纳米结构(Au @ polymer,Ag @ polymer,Cu @ polymer,Fe3O4 @ polymer和TiO2 @ polymer),从而产生了新的光学方法。 ,磁性和催化应用。这种绿色合成涉及使无机前体与聚(苯乙烯-马来酸马来酸)反应。从外部水性环境中分离出来的聚苯乙烯嵌段充当芳香族药物的疏水性贮库,因此说明了用于药物递送的功能性纳米物体的整合。在这些纳米复合材料中,具有良好生物相容性的Au @ polymer纳米颗粒在表面等离振子共振位移,非线性荧光和表面增强拉曼散射特性方面表现出壳依赖性信号增强。这些独特的光学特性用于在将芳香族光敏剂递送到HeLa细胞进行光动力治疗时用于双峰成像。

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