高等学校化学学报 ›› 2025, Vol. 46 ›› Issue (1): 20240331.doi: 10.7503/cjcu20240331

• 研究论文 • 上一篇    下一篇

自组装纳米胶束通过增加药物积累和延长滞留时间用于肿瘤光动力治疗

安要龙, 李子恒, 吴富根()   

  1. 数字医学工程全国重点实验室,江苏省生物材料与器件重点实验室,东南大学生物科学与医学工程学院,南京 211189
  • 收稿日期:2024-07-01 出版日期:2025-01-10 发布日期:2024-10-23
  • 通讯作者: 吴富根 E-mail:wufg@seu.edu.cn
  • 基金资助:
    国家自然科学基金(82372127)

A Self-assembled Nanomicelle for Realizing Tumor Photodynamic Therapy via Increasing Drug Accumulation and Prolonging Retention Time

AN Yaolong, LI Zi⁃Heng, WU Fu⁃Gen()   

  1. State Key Laboratory of Digital Medical Engineering,Key Laboratory for Biomaterials and Devices of Jiangsu Province,School of Biological Science and Medical Engineering,Southeast University,Nanjing 211189,China
  • Received:2024-07-01 Online:2025-01-10 Published:2024-10-23
  • Contact: WU Fu?Gen E-mail:wufg@seu.edu.cn
  • Supported by:
    the National Natural Science Foundation of China(82372127)

摘要:

通过两亲性D-α-生育酚聚乙二醇1000琥珀酸酯(TPGS)和疏水性光敏剂焦脱镁叶绿酸a(Ppa)的共组装制备了用于光动力疗法(PDT)的纳米胶束(表示为TPGS/Ppa). 所制备的纳米胶束为直径(18.0±2.2) nm的球形结构, zeta电位约为-18 mV. 此外, 纳米胶束表现出优异的光稳定性、 生物相容性和光毒性, 并通过增强渗透和滞留效应(EPR效应)有效地到达肿瘤区域. 此外, 发现TPGS/Ppa纳米胶束对4T1小鼠乳腺癌细胞的光毒性比游离Ppa更高; 并在4T1荷瘤小鼠模型中验证了该纳米胶束的优异抗肿瘤效果. 本研究开发的新型光动力纳米胶束TPGS/Ppa可增加药物在肿瘤区域的积累并延长其保留时间, 为小分子疏水性药物的递送和肿瘤PDT提供了可行的策略.

关键词: 光动力疗法, 纳米药物, 光敏剂, D-α-生育酚聚乙二醇1000琥珀酸酯, 细胞凋亡

Abstract:

A nanomicelle(denoted as TPGS/Ppa) was fabricated via the coassembly of the amphiphilic D-α-tocopheryl polyethylene glycol 1000 succinate(TPGS) and the hydrophobic photosensitizer pyropheophorbide a(Ppa) for photodynamic therapy(PDT). The obtained nanomicelle possessed a spherical structure with a diameter of (18.0±2.2) nm and a zeta potential of approximately -18 mV. Besides, the nanomicelle exhibited excellent photostability, biocompatibility, and phototoxicity, and could effectively reach the tumor region via the enhanced permeability and retention effect. Additionally, it could be found that the TPGS/Ppa nanomicelle exhibited higher phototoxicity against 4T1 murine mammary cancer cells than free Ppa. In the 4T1 tumor-bearing mouse model, the nanomicelle showed an excellent antitumor therapeutic effect. This study develops a new type of photodynamic nanomicelle TPGS/Ppa, which can increase the accumulation of drugs and prolong their tumor retention time, providing a feasible strategy for realizing the delivery of small-molecule hydrophobic drugs and tumor PDT.

Key words: Photodynamic therapy, Nanodrug, Photosensitizer, D-α-Tocopheryl polyethylene glycol 1000 succinate, Cell apoptosis

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