材料科学
纳米复合材料
光敏剂
卟啉
生物相容性
生物利用度
光动力疗法
两亲性
纳米技术
生物物理学
光化学
有机化学
化学
共聚物
聚合物
药理学
冶金
复合材料
生物
医学
作者
Jun-Qing Chu,Dongxia Wang,Limin Zhang,Meng Cheng,Rongzhi Gao,Cheng-Guang Gu,Lang Pengfei,Peiqi Liu,Li‐Na Zhu,De‐Ming Kong
标识
DOI:10.1021/acsami.9b21443
摘要
A simple and green layer-by-layer assembly strategy is developed for the preparation of a highly bioavailable nanocomposite photosensitizer by assembling near-infrared (NIR) light-sensitive porphyrin/G-quadruplex complexes on the surface of a highly biocompatible nanoparticle that is prepared via Zn2+-assisted coordination self-assembly of an amphiphilic amino acid. After being efficiently delivered to the target site and internalized into tumor cells via enhanced permeability and retention effect and interactions between aptamers and tumor markers, the as-prepared nanoassembly can be directly used as an NIR light-responsive photosensitizer for tumor photodynamic therapy (PDT) since the porphyrin/G-quadruplex complexes are exposed on the nanoassembly surface and kept in an active state. It can also disassemble under the synergistic stimuli of an acidic pH environment and overexpressed glutathione, leasing more efficient porphyrin/G-quadruplex composite photosensitizers while reducing the interference caused by glutathione-dependent 1O2 consumption. Since the nanoassembly can work no matter if it is disassembled or not, the compulsory requirement for in vivo photosensitizer release is eliminated, thus resulting in the great improvement of the bioavailability of the photosensitizer. The PDT applications of the nanoassembly were well demonstrated in both in vitro cell and in vivo animal experiments.
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