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二硫键/α-酰胺键连接的阿霉素二聚前药:聚集结构对 pH/GSH 双重触发药物释放的影响。

Disulfide/α-Amide-Bridged Doxorubicin Dimeric Prodrug: Effect of Aggregation Structures on pH/GSH Dual-Triggered Drug Release.

机构信息

State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, China.

出版信息

Langmuir. 2024 May 28;40(21):11098-11105. doi: 10.1021/acs.langmuir.4c00663. Epub 2024 May 13.

Abstract

Disulfide bonding has attracted intense interest in the tumor intracellular microenvironment-activated drug delivery systems (DDSs) in the last decades. Although various molecular structures of redox-responsive disulfide-containing DDSs have been developed, no investigation was reported on the effect of aggregation structures. Here, the effect of aggregation structures on pH/GSH dual-triggered drug release was investigated with the simplest pH/GSH dual-triggered doxorubicin-based drug self-delivery system (DSDS), the disulfide/α-amide-bridged doxorubicin dimeric prodrug (DDOX), as a model. By fast precipitation or slow self-assembly, DDOX nanoparticles were obtained. With similar diameters, they exhibited different pH/GSH dual-triggered drug releases, demonstrating the effect of aggregation structures. The π-π stacking in different degrees was revealed by the UV-vis, fluorescence, and BET analysis of the DDOX nanoparticles. The effect of the π-π stacking between the dimeric prodrug and its activated products on drug release was also explored with the molecular simulation approach. The finding opens new ideas in the design of high-performance DDSs for future precise tumor treatment.

摘要

在过去几十年中,二硫键键合在肿瘤细胞内微环境激活药物传递系统(DDS)中引起了极大的兴趣。尽管已经开发出了各种具有氧化还原响应性二硫键的分子结构的 DDS,但尚未报道聚集结构的影响。在这里,通过最简单的 pH/GSH 双重触发阿霉素基药物自传递系统(DSDS)——二硫键/α-酰胺桥接阿霉素二聚体前药(DDOX)作为模型,研究了聚集结构对 pH/GSH 双重触发药物释放的影响。通过快速沉淀或缓慢自组装,获得了 DDOX 纳米颗粒。尽管直径相似,但它们表现出不同的 pH/GSH 双重触发药物释放,证明了聚集结构的影响。通过 DDOX 纳米颗粒的紫外-可见、荧光和 BET 分析揭示了不同程度的π-π堆积。还通过分子模拟方法探索了二聚体前药与其激活产物之间的π-π堆积对药物释放的影响。这一发现为未来精确肿瘤治疗的高性能 DDS 设计开辟了新思路。

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