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用于肿瘤靶向化学动力学治疗的铁基循环催化双自由基纳米发电机

Fe-based cyclically catalyzing double free radical nanogenerator for tumor-targeted chemodynamic therapy.

作者信息

Wang Yang, Zhu Chunquan, Fan Xiaohui, Yang Yuanyuan, Chen Zhaoxia, Yu Li, Zhang Yuhong

机构信息

Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules, College of Chemistry and Chemical Engineering, Hubei University, Wuhan 430062, China.

Department of Orthopedics Trauma and Microsurgery, Zhongnan Hospital of Wuhan University, Wuhan 430071, China.

出版信息

J Mater Chem B. 2024 May 22;12(20):4922-4934. doi: 10.1039/d3tb02763e.

Abstract

The prosperity of chemodynamic therapy provides a new strategy for tumor treatment. However, the lack of reactive oxygen species and the specific reductive tumor microenvironment have limited the further development of chemodynamic therapy. Herein, we reported a Fe-based cyclically catalyzing double free radical system for tumor therapy by catalyzing exogenous potassium persulfate (KSO) and endogenous hydrogen peroxide (HO). Sufficient amounts of Fe and SO were delivered to tumor sites tumor-targeted hyaluronic acid (HA) encapsulated mesoporous silica nanoparticles (MSNs) and released under the dual stimulation of acid and hyaluronidase (HAase) in the tumor microenvironment. Fe was reduced to Fe by the reducing agents of loaded tannic acid (TA) and intracellular glutathione (GSH), and Fe was subsequently reacted with SO and endogenous HO to produce two types of ROS (˙OH and SO˙), showing an excellent anti-tumor effect. This process not only supplied Fe for the catalysis of active substances, but also reduced the concentration of reduced substances in cells, which was conducive to the existence of free radicals for the efficient killing of tumor cells. Therefore, this iron-based catalysis of exogenous and exogenous active substances to realize a dual-radical oncotherapy nanosystem would provide a new perspective for chemodynamic therapy.

摘要

化学动力学疗法的蓬勃发展为肿瘤治疗提供了一种新策略。然而,活性氧的缺乏以及特定的还原性肿瘤微环境限制了化学动力学疗法的进一步发展。在此,我们报道了一种基于铁的循环催化双自由基体系,用于通过催化外源性过硫酸钾(KSO)和内源性过氧化氢(HO)进行肿瘤治疗。通过肿瘤靶向的透明质酸(HA)包裹的介孔二氧化硅纳米颗粒(MSNs)将足量的铁和硫酸根输送到肿瘤部位,并在肿瘤微环境中的酸和透明质酸酶(HAase)的双重刺激下释放。负载的单宁酸(TA)和细胞内谷胱甘肽(GSH)等还原剂将Fe还原为Fe,随后Fe与硫酸根和内源性HO反应生成两种类型的活性氧(˙OH和SO˙),显示出优异的抗肿瘤效果。这一过程不仅为活性物质的催化提供了铁,还降低了细胞内还原物质的浓度,有利于自由基的存在以高效杀死肿瘤细胞。因此,这种基于铁催化外源性和内源性活性物质实现双自由基肿瘤治疗的纳米系统将为化学动力学疗法提供新的视角。

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