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基于透明质酸的靶向纳米复合物的光激活药物释放用于癌症治疗。

Light-activated drug release from a hyaluronic acid targeted nanoconjugate for cancer therapy.

机构信息

Department of Radiology and Tianjin Key Laboratory of Functional Imaging, Tianjin Medical University General Hospital, Tianjin 300052, P. R. China.

出版信息

J Mater Chem B. 2019 Aug 7;7(31):4843-4853. doi: 10.1039/c9tb01115c.

Abstract

Hyaluronic acid (HA)-based nanocarriers are of great interest in the drug delivery field due to the tumor targetability via CD44-mediated recognition and endocytosis. However, sufficient tumor-specific release of encapsulated cargoes with steady controllability is necessary to optimize their outcome for cancer therapy. In this study, we constructed a light-activated nanocarrier TKHCENPDOX to enable on-demand drug release at the desired site (tumor). Particularly, TKHCENPDOX encapsulating doxorubicin (DOX) was self-assembled from a HA-photosensitizer conjugate (HA-TK-Ce6) containing reactive oxygen species (ROS)-sensitive thioketal (TK) linkers. Following i.v. injection, TKHCENPDOX was accumulated in the MDA-MB-231 breast tumor xenograft more efficiently through preventing drug leakage in the bloodstream and the HA-mediated targeting effect. Upon internalization into tumoral cells, 660 nm laser irradiation generated ROS during a photodynamic (PDT) process to cleave the TK linker next to Ce6, resulting in light-induced TKHCENPDOX dissociation and selective DOX release in the tumor area. Consequently, TKHCENPDOX showed a remarkable therapeutic effect and minimized toxicity in vivo. This strategy might provide new insight for designing cancer-selective nanoplatforms with active targeting and locoregional drug release simultaneously.

摘要

基于透明质酸 (HA) 的纳米载体由于通过 CD44 介导的识别和内吞作用具有肿瘤靶向性,因此在药物输送领域引起了极大的兴趣。然而,为了优化其癌症治疗的效果,有必要对封装货物进行充分的肿瘤特异性释放,并具有稳定的可控性。在本研究中,我们构建了一种光激活的纳米载体 TKHCENPDOX,以实现所需部位(肿瘤)的按需药物释放。特别是,TKHCENPDOX 包封阿霉素 (DOX) 由包含活性氧 (ROS) 敏感硫缩酮 (TK) 接头的 HA-光敏剂缀合物 (HA-TK-Ce6) 自组装而成。静脉注射后,TKHCENPDOX 通过防止药物在血液中泄漏和 HA 介导的靶向作用,更有效地在 MDA-MB-231 乳腺癌异种移植瘤中积累。进入肿瘤细胞后,660nm 激光照射在光动力治疗 (PDT) 过程中产生 ROS,以裂解 Ce6 附近的 TK 接头,导致光诱导的 TKHCENPDOX 解离,并在肿瘤区域选择性释放 DOX。因此,TKHCENPDOX 在体内表现出显著的治疗效果和最小的毒性。该策略可能为设计具有主动靶向和局部药物释放的癌症选择性纳米平台提供新的思路。

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