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Controllable Synthesis of a Smart Multifunctional Nanoscale Metal-Organic Framework for Magnetic Resonance/Optical Imaging and Targeted Drug Delivery

机译:用于磁共振/光学成像和靶向药物递送的智能多功能纳米金属 - 有机框架的可控合成

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As a result of their extraordinarily large surfaces and well-defined pores, the design of a multifunctional metal-organic framework (MOF) is crucial for drug delivery but has rarely been reported. In this paper, a novel drug delivery system (DDS) based on nanoscale MOF was developed for use in cancer diagnosis and therapy. This MOF-based tumor targeting DDS was fabricated by a simple postsynthetic surface modification process. First, magnetic mesoporous nanomaterial Fe-MIL-53-NH2 was used for encapsulating the drug and served as a magnetic resonance contrast agent. Moreover, the Fe-MIL-53-NH2 nanomaterial exhibited a high loading capacity for the model anticancer drug 5-fluorouracil (5 -FU). Subsequently, the fluorescence imaging agent 5-carboxyfluorescein (5-FAM) and the targeting reagent folic acid (FA) were conjugated to the 5 -FU -loaded Fe-MIL-53-NH2, resulting in the advanced DDS Fe-MIL-53-NH2-FA-5-FAM/5-FU. Owing to the multifunctional surface modification, the obtained DDS Fe-MIL-53-NH2-FA-5-FAM/5-FU shows good biocompatibility, tumor enhanced cellular uptake, strong cancer cell growth inhibitory effect, excellent fluorescence imaging, and outstanding magnetic resonance imaging capability. Taken together, this study integrates diagnostic and treatment aspects into a single platform by a simple and efficient strategy, aiming for facilitating new possibilities for MOF use for multifunctional drug delivery.
机译:由于其非常大的表面和明确定义的孔隙,多功能金属 - 有机骨架(MOF)的设计对于药物递送至关重要,但很少报道。本文开发了一种基于纳米载体MOF的新型药物递送系统(DDS)用于癌症诊断和治疗。该基于MOF的肿瘤靶向DDS通过简单的后合成表面改性方法制造。首先,磁性介孔纳米材料Fe-MIL-53-NH2用于包封药物并用作磁共振造影剂。此外,Fe-MIL-53-NH2纳米材料表现出模型抗癌药物5-氟尿嘧啶(5 -FU)的高负载能力。随后,荧光成像剂5-羧基荧光素(5-FAM)和靶向试剂叶酸(FA)与5 -FU加载的Fe-MIL-53-NH2缀合,导致高级DDS FE-MIL-53 -NH2-FA-5-FAM / 5-FU。由于多功能表面改性,所获得的DDS Fe-MIL-53-NH2-FA-5-FAM / 5-FU显示出良好的生物相容性,肿瘤增强的细胞摄取,强烈的癌细胞生长抑制作用,优异的荧光成像,且突出磁性共振成像能力。通过简单有效的策略集成,本研究将诊断和治疗方面集成在一个平台中,旨在促进MOF用于多功能药物递送的新可能性。

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