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内源性活性氧爆发诱导和时空可控的多药物释放的可追踪纳米粒子,以增强抗肿瘤疗效。

Endogenous reactive oxygen species burst induced and spatiotemporally controlled multiple drug release by traceable nanoparticles for enhancing antitumor efficacy.

机构信息

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, P. R. China.

出版信息

Biomater Sci. 2021 Jul 13;9(14):4968-4983. doi: 10.1039/d1bm00668a.

Abstract

Reactive oxygen species (ROS) are not only used as a therapeutic reagent in chemodynamic therapy (CDT), to stimulate the release of antineoplastic drugs, they can also be used to achieve a combined effect of CDT and chemotherapy to enhance anticancer effects. Herein, we synthesized a pH-responsive prodrug (PEG2k-NH-N-DOX), ROS-responsive prodrug (PEG2k-S-S-CPT-ROS), organic CDT agents (TPP-PEG2k-LND, TPP-PEG2k-TOS), and T1-enhanced magnetic resonance imaging contrast agents (Gd-DTPA-N16-16), and used them to encapsulate combrestatinA4 (CA4) to prepare traceable pH/ROS dual-responsive multifunctional nanoparticles (TLDCAG NPs) with endogenous ROS burst and spatiotemporally controlled multiple drug release ability. Firstly, TLDCAG NPs were accumulated in the tumor cell microenvironment via an enhanced permeability and retention (EPR) effect. Secondly, CA4 was released and specifically destroyed angiogenesis to facilitate the interaction between the tumor and the remaining TLDCG NPs. After accumulating in tumor cells, the TLDCG NPs could be destroyed under acidic conditions to quickly release doxorubicin (DOX), TPP-PEG2k-LND, and TPP-PEG2k-TOS. Thirdly, TPP-PEG2k-LND and TPP-PEG2k-TOS quickly targeted mitochondria, induced endogenous ROS bursts, reduced the mitochondrial membrane potential, and induced tumor cell apoptosis. Endogenous ROS can not only be used as a therapeutic reagent for CDT, but also can cut off the thioketal bond in PEG2k-S-S-CPT-ROS and release camptothecin (CPT). Finally, TLDCAG NPs were traced by magnetic resonance imaging (MRI). Furthermore, in vitro and vivo results indicate that the TLDCAG NPs have vigorous antitumor activity and negligible systemic toxicity. Therefore, the TLDCAG NPs provide an efficient strategy for enhancing antitumor efficacy.

摘要

活性氧 (ROS) 不仅可用作化学动力学治疗 (CDT) 的治疗试剂,以刺激抗肿瘤药物的释放,还可以用于实现 CDT 和化疗的联合作用,增强抗癌效果。在此,我们合成了一种 pH 响应前药 (PEG2k-NH-N-DOX)、ROS 响应前药 (PEG2k-S-S-CPT-ROS)、有机 CDT 试剂 (TPP-PEG2k-LND、TPP-PEG2k-TOS) 和 T1 增强磁共振成像造影剂 (Gd-DTPA-N16-16),并将其包裹在康布瑞他汀 A4 (CA4) 中,制备了具有内源性 ROS 爆发和时空可控多药物释放能力的可追踪 pH/ROS 双重响应多功能纳米粒子 (TLDCAG NPs)。首先,TLDCAG NPs 通过增强的渗透性和保留 (EPR) 效应在肿瘤细胞微环境中积累。其次,CA4 被释放并特异性破坏血管生成,以促进肿瘤与剩余 TLDCG NPs 的相互作用。在积累在肿瘤细胞中后,TLDCG NPs 可以在酸性条件下被破坏,以快速释放阿霉素 (DOX)、TPP-PEG2k-LND 和 TPP-PEG2k-TOS。第三,TPP-PEG2k-LND 和 TPP-PEG2k-TOS 迅速靶向线粒体,诱导内源性 ROS 爆发,降低线粒体膜电位,诱导肿瘤细胞凋亡。内源性 ROS 不仅可用作 CDT 的治疗试剂,还可以切断 PEG2k-S-S-CPT-ROS 中的硫代缩酮键并释放喜树碱 (CPT)。最后,TLDCAG NPs 通过磁共振成像 (MRI) 进行追踪。此外,体外和体内结果表明,TLDCAG NPs 具有强大的抗肿瘤活性和可忽略的全身毒性。因此,TLDCAG NPs 为增强抗肿瘤疗效提供了一种有效的策略。

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