光动力疗法
一氧化氮
谷胱甘肽
树枝状大分子
材料科学
S-亚硝基谷胱甘肽
聚乙烯吡咯烷酮
癌症研究
黑色素瘤
透皮
药物输送
药理学
化学
医学
纳米技术
生物化学
高分子化学
有机化学
酶
作者
Fan Jia,Weijiang Yu,Xinfang Li,Yonghang Chen,Youxiang Wang,Jian Ji
摘要
Abstract Photodynamic therapy (PDT) represents an attractive promising route for melanoma treatment. However, its therapeutic efficacy is compromised by inefficient drug delivery and high glutathione (GSH) levels in cancer cells. To overcome these challenges, microneedles (MNs) system loaded with GSH‐scavenging nanocomposites was presented for nitric oxide (NO) enhanced PDT. The nanocomposites consisted of S ‐nitroso‐ N ‐acrylate penicillamine (SNAP; a NO donor) grafted fourth‐generation polyamide amine dendrimer (G 4 ) and chlorin e6 (Ce6). Upon local insertion of polyvinylpyrrolidone MNs, G 4 ‐SNAP/Ce6 composites were fast delivered and significantly amplified the therapeutic effects during PDT, via GSH depletion and reactive nitrogen species generation. Even with a single administration and low power light exposure, MNs with G 4 ‐SNAP/Ce6 effectively halt the tumor progression. The system demonstrated better cancer ablation efficacy than Ce6 alone toward melanoma. The strategy may inspire new ideas for future PDT‐related therapy for skin tumors.
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