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基于磁性金属有机框架CuBTC的纳米/微复合材料实现高度改进的pH响应型抗癌药物递送及T2加权磁共振成像

Highly improved pH-Responsive anticancer drug delivery and T2-Weighted MRI imaging by magnetic MOF CuBTC-based nano/microcomposite.

作者信息

Gharehdaghi Zahra, Naghib Seyed Morteza, Rahimi Rahmatollah, Bakhshi Atin, Kefayat Amirhosein, Shamaeizadeh Armin, Molaabasi Fatemeh

机构信息

Department of Chemistry, Iran University of Science and Technology, Tehran, Iran.

Nanotechnology Department, School of Advanced Technologies, Iran University of Science and Technology (IUST), Tehran, Iran.

出版信息

Front Mol Biosci. 2023 Apr 4;10:1071376. doi: 10.3389/fmolb.2023.1071376. eCollection 2023.

Abstract

Cu-BTC framework has received a considerable attention in recent years as a drug carrier candidate for cancer treatment due to its unique structural properties and promising biocompatibility. However, its intrinsic deficiency for medical imaging potentially limits its bioapplications; To address this subject, a magnetic nano/microscale MOF has been successfully fabricated by introducing FeO nanoparticles as an imaging agent into the porous isoreticular MOF [Cu(BTC)] as a drug carrier. The synthesized magnetic MOFs exhibits a high loading capacity (40.5%) toward the model anticancer DOX with an excellent pH-responsive drug release. The proposed nanocomposite not only possesses large surface area, high magnetic response, large mesopore volume, high transverse relaxivity ( ) and good stability but also exhibits superior biocompatibility, specific tumor cellular uptake, and significant cancer cell viability inhibitory effect without any targeting agent. It is expected that the synthesized magnetic nano/microcomposite may be used for clinical purposes and can also serve as a platform for photoactive antibacterial therapy ae well as pH/GSH/photo-triple-responsive nanocarrier.

摘要

近年来,Cu-BTC框架因其独特的结构特性和良好的生物相容性,作为一种癌症治疗药物载体候选物受到了广泛关注。然而,其在医学成像方面的固有缺陷可能会限制其生物应用;为了解决这一问题,通过将作为成像剂的FeO纳米颗粒引入作为药物载体的多孔同网状金属有机框架[Cu(BTC)]中,成功制备了一种磁性纳米/微米级金属有机框架。合成的磁性金属有机框架对模型抗癌药物阿霉素具有高负载量(40.5%),并具有优异的pH响应药物释放性能。所提出的纳米复合材料不仅具有大表面积、高磁响应、大孔体积、高横向弛豫率()和良好的稳定性,而且在没有任何靶向剂的情况下表现出优异的生物相容性、特异性肿瘤细胞摄取和显著的癌细胞活力抑制作用。预计合成的磁性纳米/微米复合材料可用于临床,也可作为光活性抗菌治疗以及pH/谷胱甘肽/光三重响应纳米载体的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b36/10114589/473930bc5c3c/FMOLB_fmolb-2023-1071376_wc_sch1.jpg

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