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纳米级金属有机框架生成用于癌症治疗的活性氧。

Nanoscale Metal-Organic Frameworks Generate Reactive Oxygen Species for Cancer Therapy.

作者信息

Ni Kaiyuan, Lan Guangxu, Lin Wenbin

机构信息

Department of Chemistry, Department of Radiation and Cellular Oncology, and Ludwig Center for Metastasis Research, The University of Chicago, Chicago, Illinois 60637, United States.

出版信息

ACS Cent Sci. 2020 Jun 24;6(6):861-868. doi: 10.1021/acscentsci.0c00397. Epub 2020 May 15.

Abstract

In the past 15 years, enormous progress has been made in cancer nanotechnology, and a several nanoparticles have entered clinical testing for cancer treatment. Among these nanoparticles are nanoscale metal-organic frameworks (nMOFs), a class of organic-inorganic hybrid nanomaterials constructed from metal binding sites and bridging ligands, which have attracted significant attention for their ability to integrate porosity, crystallinity, compositional and structural tunability, multifunctionality, and biocompatibility into a singular nanomaterial for cancer therapies. This Outlook article summarizes the progress on the design of nMOFs as nanosensitizers for photodynamic therapy (PDT), radiotherapy (RT), radiotherapy-radiodynamic therapy (RT-RDT), and chemodynamic therapy (CDT) via nMOF-mediated reactive oxygen species (ROS) generated under external energy stimuli or in the presence of endogenous chemical triggers. Inflammatory responses induced by nMOF-mediated ROS generation activate tumor microenvironments to potentiate cancer immunotherapy, extending the local treatment effects of nMOF-based ROS therapy to distant tumors via abscopal effects. Future research directions in nMOF-mediated ROS therapies and the prospect of clinical applications of nMOFs as cancer therapeutics are also discussed.

摘要

在过去15年里,癌症纳米技术取得了巨大进展,一些纳米颗粒已进入癌症治疗的临床试验阶段。这些纳米颗粒中包括纳米级金属有机框架(nMOF),它是一类由金属结合位点和桥连配体构建而成的有机-无机杂化纳米材料,因其能够将孔隙率、结晶性、组成和结构可调性、多功能性以及生物相容性整合到一种单一纳米材料中用于癌症治疗而备受关注。这篇展望文章总结了nMOF作为光动力疗法(PDT)、放射疗法(RT)、放射-光动力疗法(RT-RDT)和化学动力疗法(CDT)的纳米敏化剂设计方面的进展,这些疗法是通过nMOF在外部能量刺激下或内源性化学触发剂存在时介导产生的活性氧(ROS)来实现的。nMOF介导的ROS生成所引发的炎症反应激活肿瘤微环境以增强癌症免疫疗法,通过远隔效应将基于nMOF的ROS疗法的局部治疗效果扩展至远处肿瘤。文中还讨论了nMOF介导的ROS疗法未来的研究方向以及nMOF作为癌症治疗剂临床应用的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/085f/7318063/9ded83d2919e/oc0c00397_0002.jpg

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