化学
药物输送
胶束
生物物理学
药品
喜树碱
靶向给药
费斯特共振能量转移
纳米载体
细胞穿透肽
硫醚
生物化学
肽
组合化学
药理学
立体化学
荧光
生物
有机化学
量子力学
水溶液
物理
作者
Xing Guo,Lin Wang,Kayla Duval,Jing Fan,Shaobing Zhou,Zi Chen
出处
期刊:PubMed
[National Institutes of Health]
日期:2024-07-30
被引量:1
标识
DOI:10.48550/arxiv.2407.20538
摘要
Trans-activating transcriptional activator (TAT), a cell-penetrating peptide, has been extensively used for facilitating cellular uptake and nuclear targeting of drug delivery systems. However, the positively charged TAT peptide usually strongly interacts with serum components and undergoes substantial phagocytosis by the reticuloendothelial system, causing a short blood circulation in vivo. In this work, an acid-active tumor targeting nanoplatform DA-TAT-PECL was developed to effectively inhibit the nonspecific interactions of TAT in the bloodstream. 2,3-dimethylmaleic anhydride (DA) was first used to convert the TAT's amines to carboxylic acid, the resulting DA-TAT was further conjugated to poly(ethylene glycol)-poly(ε-caprolactone) (PEG-PCL, PECL) to get DA-TAT-PECL. After self-assembly into polymeric micelles, they were capable of circulating in the physiological condition for a long time and promoting cell penetration upon accumulation at the tumor site and de-shielding the DA group. Moreover, camptothecin (CPT) was used as the anticancer drug and modified into a dimer (CPT)2-ss-Mal, in which two CPT molecules were connected by a reduction-labile maleimide thioether bond. The Förster resonance energy transfer (FRET) signal between CPT and maleimide thioether bond was monitored to visualize the drug release process and effective targeted delivery of antitumor drugs was demonstrated. This pH/reduction dual-responsive micelle system provides a new platform for high fidelity cancer therapy.
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