Shang Wenting, Peng Li, Guo Pengyu, Hui Hui, Yang Xin, Tian Jie
CAS Key Laboratory of Molecular Imaging, the State Key Laboratory of Management and Control for Complex Systems, Institute of Automation, Chinese Academy of Sciences, Beijing 100190, PR China.
Beijing Key Laboratory of Molecular Imaging, Beijing 100190, China.
ACS Biomater Sci Eng. 2020 Feb 10;6(2):1008-1016. doi: 10.1021/acsbiomaterials.9b01075. Epub 2019 Dec 13.
With the rapid development of nanotechnology, nanomaterial drug delivery systems have provided an alternative for designing controllable drug delivery systems due to their spatiotemporally controllable properties. As a new type of porous material, metal-organic frameworks (MOFs) have been widely used in biomedical applications, especially drug delivery systems, owing to their tunable pore size, high surface area and pore volume, and easy surface modification. Here, we demonstrate an MOF as a theranostic nanoplatform to combine drug therapy and phototherapy after labeling targeting peptide iRGD. The micropore Fe-MOF was used as MRI agents for locating tumors and as nanocarriers to upload chemotherapeutic drugs. Moreover, MOF showed excellent targeting performance under different administration including intravenous injection for breast cancer and local instillation for bladder cancer. Notably, when irradiated with an 808 nm laser, the agent demonstrates the high efficacy of photothermal therapy and heat release efficiency of the drug around the tumor site. This combination therapy provides an alternative drug administration method and can be adapted to a series of cancer cell types and molecular targets associated with disease progression.
随着纳米技术的飞速发展,纳米材料药物递送系统因其时空可控的特性,为设计可控药物递送系统提供了一种替代方案。作为一种新型多孔材料,金属有机框架(MOFs)因其可调孔径、高比表面积和孔体积以及易于表面修饰,已在生物医学应用中广泛使用,尤其是药物递送系统。在此,我们展示了一种MOF作为一种诊疗纳米平台,在标记靶向肽iRGD后结合药物治疗和光疗。微孔铁基MOF用作MRI剂来定位肿瘤,并作为纳米载体来负载化疗药物。此外,MOF在不同给药方式下均表现出优异的靶向性能,包括乳腺癌的静脉注射和膀胱癌的局部滴注。值得注意的是,当用808 nm激光照射时,该试剂在肿瘤部位周围显示出光热疗法的高效性和药物的热释放效率。这种联合疗法提供了一种替代给药方法,并且可以适用于一系列与疾病进展相关的癌细胞类型和分子靶点。