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ROS 诱导的 Zr-MOFs 平台在多模式协同治疗中的应用。

Applications of ROS-InducedZr-MOFs Platform in Multimodal Synergistic Therapy.

机构信息

Guangdong Key Laboratory for Research and Development of Natural Drugs, Key Laboratory of Research and Development of New Medical Materials of Guangdong Medical University, School of Pharmacy, Guangdong Medical University, Dongguan, 523808, Guangdong, China.

Department of Pharmacy, School of Medicine, Xi'an International University, Xi'an, 710077, Shaanxi, China.

出版信息

Mini Rev Med Chem. 2021;21(13):1718-1733. doi: 10.2174/1389557521666210105111850.

Abstract

BACKGROUND

Metal-organic frameworks (MOFs) possess adjustable aperture, high load capacities, tailorable structures, and excellent biocompatibilities for their use as drug delivery carries in cancer therapy. Until now, Zr-MOFs, in particular, combine optimal stability towards hydrolysis and post synthetic modification with low toxicity, and are widely studied for their excellentbiological performance.

INTRODUCTION

This review comprises the exploration of Zr-MOFs as drug delivery devices (DDSs) with a focus on various new methods, including chemotherapy (CT), photodynamic therapy (PDT), photothermal therapy (PTT), sonodynamic therapy (SDT), radiotherapy, immunotherapy, gene therapy and related combined therapies, which all generate reactive oxygen species (ROS) to achieve high efficiency of tumor therapy.

CONCLUSION

We described and summarized these pertinent examples of the therapeutic mechanisms and highlighted the antitumor effects of their biological application both in vitro and in vivo. The perspectives on their future applications and the analogous challenge of the Zr-MOFs materials are given.

摘要

背景

金属有机骨架(MOFs)具有可调节的孔径、高负载能力、可定制的结构和优异的生物相容性,可作为癌症治疗中的药物输送载体。到目前为止,Zr-MOFs 特别是结合了水解和后合成修饰的最佳稳定性以及低毒性,并因其优异的生物学性能而得到广泛研究。

介绍

本综述探讨了 Zr-MOFs 作为药物输送装置(DDS)的应用,重点介绍了各种新方法,包括化学疗法(CT)、光动力疗法(PDT)、光热疗法(PTT)、声动力疗法(SDT)、放射疗法、免疫疗法、基因疗法和相关联合疗法,所有这些方法都能产生活性氧(ROS),从而实现肿瘤治疗的高效率。

结论

我们描述并总结了这些治疗机制的相关实例,并强调了它们在体外和体内的生物应用的抗肿瘤作用。还给出了它们未来应用的展望以及 Zr-MOFs 材料面临的类似挑战。

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