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首页> 外文期刊>Biomaterials >Persistent luminescent metal-organic frameworks with long-lasting near infrared emission for tumor site activated imaging and drug delivery
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Persistent luminescent metal-organic frameworks with long-lasting near infrared emission for tumor site activated imaging and drug delivery

机译:持续的发光金属 - 有机框架,持续近红外发射肿瘤部位活性成像和药物递送

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摘要

Luminescent porous materials have been widely used in biosensing, bioimaging and drug delivery by virtue of the special porous structure and luminescent property. The main obstacle for the application in biosensing and bioimaging is the background interference of external irradiation. Herein, we report a background interference-free persistent luminescent metal-organic framework (PLMOF) with persistent luminescent near infrared (NIR) luminescence for tumor site activated persistent luminescence imaging. The PLMOF (PLNPs@ZIF-8) was prepared by in-situ growth of MOF on the persistent luminescent nanoparticles (PLNPs) via a surface adsorption induced self-assembly method. The PLMOF possessed NIR persistent luminescence and renewable NIR luminescence and thus enabled deep-tissue and long-term imaging without external excitation. Specifically, the PLMOF showed acidic tumor site activated persistent luminescence for in vitro and in vivo tumor imaging, which was also help to reduce the background interference. The mechanism of acidic activation was attributed to the protonation of imidazole that induces disassembly of ZIF-8. In addition, the PLMOF presented a high anti-cancer drug loading capacity, acidity-responsive drug release behavior, and significant anti-tumor effect. All these results indicate that our PLMOF can serve as a promising theranostic platform for precision medicine.
机译:通过特殊的多孔结构和发光性能,发光多孔材料已广泛用于生物传感,生物体和药物递送中。在生物传感和生物体中应用的主要障碍是外部辐射的背景干扰。在此,我们报告了具有持续发光的无干扰持续发光金属 - 有机骨架(PLMOF),靠近红外线(NIR)发光,用于肿瘤位点活性持续发光成像。通过表面吸附诱导的自组装方法通过原位生长MOF原位生长来制备PLMOF(PLNPS @ ZIF-8)。 PLMOF拥有NIR持续发光和可再生NIR发光,因此在没有外部激励的情况下使能深组织和长期成像。具体而言,PLMOF显示酸性肿瘤位点,用于体外和体内肿瘤成像的活化持续发光,这也有助于降低背景干扰。酸性活化的机制归因于咪唑的质子化,诱导ZIF-8的拆卸。此外,PLMOF呈现出高抗癌药物负载能力,酸度响应药物释放行为,以及显着的抗肿瘤作用。所有这些结果表明,我们的PLMOF可以作为精密药物的有前途的治疗平台。

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