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用于近红外光控制药物释放和按需协同化学生物动力学治疗的 ROS 可裂解二硒纳米医学

ROS-cleavable diselenide nanomedicine for NIR-controlled drug release and on-demand synergistic chemo-photodynamic therapy.

机构信息

Key Laboratory for Green Chemical Process of Ministry of Education, Hubei Key Laboratory of Novel Reactor and Green Chemical Technology, Hubei Engineering Research Center for Advanced Fine Chemicals, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, 206 1st Rd Optics Valley, East Lake New Technology Development District, Wuhan, Hubei 430205, China.

State Key Laboratory of Natural Medicines, China Pharmaceutical University, 24 Tong Jia Xiang, Nanjing 210009, China.

出版信息

Acta Biomater. 2022 Nov;153:442-452. doi: 10.1016/j.actbio.2022.09.061. Epub 2022 Sep 28.

Abstract

Many chemotherapeutic drugs and photosensitizers suffer from poor solubility, unspecific delivery and uncontrollable release, which severely impede their biomedical applications. Herein, we designed a type of ROS-cleavable hydrophilic diselenide nanoparticles through self-assembling of PEG-modified camptothecin (CPT, a hydrophobic drug) and meso‑tetra (4-carboxyphenyl) porphine (TCPP, a hydrophobic photosensitizer). The TCPP@SeSe-CPT nanomedicine (particle size: 116.5 ± 1.9 nm) has stability for long-time blood circulation. Near-infrared (NIR) laser-triggered generation of ROS from TCPP can efficiently break the ROS-sensitive diselenide bond, which induces the decomposition of TCPP@SeSe-CPT nanomedicine for concurrent release of CPT and TCPP. Moreover, the released amounts of CPT and TCPP can be regulated by adjusting the NIR laser irradiation time. Such NIR-controlled release of CPT and TCPP can give rise to on-demand synergistic chemo-/photodynamic therapeutic effects for maximized tumor growth suppression with minimized side effects. STATEMENT OF SIGNIFICANCE: In this work, a ROS-cleavable diselenide nanoparticle was designed and successfully self-assembled with the hydrophobic drug camptothecin and photosensitizer TCPP into a hydrophilic TCPP@SeSe-CPT nanomedicine. Compared with traditional drug delivery systems, TCPP@SeSe-CPT nanomicelles could reduce premature drug release and co-deliver hydrophobic chemotherapeutic drugs/photosensitizers to tumors, which yielded a NIR-controlled synergistic chemo-/photodynamic therapeutic effect. Since diselenide bond is more sensitive than the traditional disulfide bond, under the 660 nm laser irradiation (300 mW/cm), ROS generated from laser-excited TCPP in TCPP@SeSe-CPT nanomicelles could break the diselenium bonds to achieve the light-controlled release of CPT. In addition, the photosensitizer TCPP could also be imaged at the tumor site. Due to the photodynamic therapy from laser-excited TCPP and chemotherapy from photocontrolled release of CPT in TCPP@SeSe-CPT, our designed nanomicelles yielded potent antitumor effects both in vitro and in vivo.

摘要

许多化疗药物和光增敏剂存在溶解度差、递送非特异性和释放不可控等问题,严重阻碍了它们在生物医学中的应用。在此,我们通过聚乙二醇修饰的喜树碱(CPT,一种疏水性药物)和间四(4-羧基苯基)卟啉(TCPP,一种疏水性光增敏剂)的自组装设计了一种 ROS 可裂解的亲水性二硒纳米粒子。TCPP@SeSe-CPT 纳米药物(粒径:116.5±1.9nm)具有长时间血液循环稳定性。来自 TCPP 的近红外(NIR)激光触发 ROS 的产生可以有效地打破 ROS 敏感的二硒键,从而诱导 TCPP@SeSe-CPT 纳米药物的分解,同时释放 CPT 和 TCPP。此外,通过调整 NIR 激光照射时间可以调节 CPT 和 TCPP 的释放量。这种 NIR 控制的 CPT 和 TCPP 释放可以按需产生协同的化疗/光动力治疗效果,最大限度地抑制肿瘤生长,最小化副作用。意义声明:在这项工作中,设计了一种 ROS 可裂解的二硒纳米粒子,并成功地将疏水性药物喜树碱和光增敏剂 TCPP 自组装成亲水性 TCPP@SeSe-CPT 纳米药物。与传统的药物传递系统相比,TCPP@SeSe-CPT 纳米胶束可以减少药物的过早释放,并将疏水性化疗药物/光增敏剂共同递送到肿瘤部位,从而产生 NIR 控制的协同化疗/光动力治疗效果。由于二硒键比传统的二硫键更敏感,在 660nm 激光照射(300mW/cm)下,激光激发的 TCPP 在 TCPP@SeSe-CPT 纳米胶束中产生的 ROS 可以破坏二硒键,实现 CPT 的光控释放。此外,TCPP 光增敏剂也可以在肿瘤部位成像。由于激光激发的 TCPP 的光动力治疗和 TCPP@SeSe-CPT 中光控释放的 CPT 的化疗,我们设计的纳米胶束在体外和体内都产生了强大的抗肿瘤作用。

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