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环境响应性金属有机框架作为肿瘤治疗的药物递送系统

Environment Responsive Metal-Organic Frameworks as Drug Delivery System for Tumor Therapy.

作者信息

Yan Chao, Jin Yue, Zhao Chuanxiang

机构信息

The Affiliated Huai'an Hospital of Xuzhou Medical University and The Second People's Hospital of Huai'an, No. 62, Huaihai Road (S.), Huai'an, 223002, China.

School of Medical Technology, Jiangsu College of Nursing, Huai'an City, Jiangsu Province, China.

出版信息

Nanoscale Res Lett. 2021 Sep 3;16(1):140. doi: 10.1186/s11671-021-03597-w.

Abstract

Nanoparticles as drug delivery systems can alter the drugs' hydrophilicity to affect drug uptake and efflux in tissues. They prevent drugs from non-specifically binding with bio-macromolecules and enhance drug accumulation at the lesion sites, improving therapy effects and reducing unnecessary side effects. Metal-organic frameworks (MOFs), the typical nanoparticles, a class of crystalline porous materials via self-assembled organic linkers and metal ions, exhibit excellent biodegradability, pore shape and sizes, and finely tunable chemical composition. MOFs have a rigid molecular structure, and tunable pore size can improve the encapsulation drug's stability under harsh conditions. Besides, the surface of MOFs can be modified with small-molecule ligands and biomolecule, and binding with the biomarkers which is overexpressed on the surface of cancer cells. MOFs formulations for therapeutic have been developed to effectively respond to the unique tumor microenvironment (TEM), such as high HO levels, hypoxia, and high concentration glutathione (GSH). Thus, MOFs as a drug delivery system should avoid drugs leaking during blood circulation and releasing at the lesion sites via a controlling manner. In this article, we will summary environment responsive MOFs as drug delivery systems for tumor therapy under different stimuli.

摘要

作为药物递送系统的纳米颗粒可以改变药物的亲水性,从而影响药物在组织中的摄取和流出。它们可防止药物与生物大分子发生非特异性结合,并增强药物在病变部位的蓄积,提高治疗效果并减少不必要的副作用。金属有机框架(MOF)作为典型的纳米颗粒,是一类通过自组装有机连接体和金属离子形成的结晶多孔材料,具有出色的生物降解性、孔形状和尺寸,以及可精细调节的化学成分。MOF具有刚性分子结构,可调节的孔径能提高被包封药物在苛刻条件下的稳定性。此外,MOF的表面可用小分子配体和生物分子进行修饰,并与癌细胞表面过表达的生物标志物结合。已开发出用于治疗的MOF制剂,以有效应对独特的肿瘤微环境(TEM),如高过氧化氢水平、缺氧和高浓度谷胱甘肽(GSH)。因此,作为药物递送系统的MOF应避免药物在血液循环过程中泄漏,并以可控方式在病变部位释放。在本文中,我们将总结环境响应性MOF作为不同刺激下肿瘤治疗药物递送系统的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3a7/8417173/719bf1383186/11671_2021_3597_Fig1_HTML.jpg

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