光动力疗法
材料科学
体内分布
光敏剂
纳米团簇
纳米技术
聚乙二醇
单线态氧
荧光
PEG比率
纳米颗粒
生物物理学
表面改性
药物输送
体外
化学
光化学
经济
财务
有机化学
氧气
物理化学
物理
量子力学
生物化学
生物
作者
Chunlei Zhang,Chao Li,Yanlei Liu,Jingpu Zhang,Chenchen Bao,Shujing Liang,Qing Wang,Yao Yang,Hualin Fu,Kan Wang,Daxiang Cui
标识
DOI:10.1002/adfm.201403095
摘要
Gold nanoclusters (GNCs) attract increasing attention due to their potential applications in sensing, catalysis, optoelectronics, and biomedicine. Herein, the formation of highly fluorescent glutathione (GSH)‐capped GNCs is achieved through the delicate control of the reduction kinetics and thermodynamic selection of the Au(I)–SG complexes. Furthermore, the GNCs‐based nanoprobes are developed by the covalent coupling folic acid (FA) and PEG (polyethylene glycol) on the surface of GNCs directly, followed by trapping photosensitizer (chlorin e6, Ce6) within PEG networks and attaching to the GNCs surface. The fabricated nanoprobes (Ce6@GNCs‐PEG 2K ‐FA) possess a uniform particle size (hydrodynamic diameter ≈6.1 ± 1.2 nm), without affecting the yield of singlet oxygen of the trapped Ce6. In vitro studies show the enhanced cellular uptake and satisfactory photodynamic therapy (PDT) effectiveness toward MGC‐803 cells when compared with free Ce6. The biodistribution and excretion pathway studies of the nanoprobes in MGC‐803 tumor‐bearing nude mice reveal their superior penetration and retention behavior in tumors, while the preserved features of renal clearance and stealthy to reticulo‐endothelial system are mainly attributed to the small hydrodynamic diameters and the FA‐capped PEGylated ligands. The enhanced PDT efficacy and the nontoxicity to mice provide an exciting new nano‐platform with promising clinical translational potential.
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