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超分子金属有机骨架作为主体-客体纳米平台,用于多功能和可定制的生物医学应用。

Supramolecular metal-organic frameworks as host-guest nanoplatforms for versatile and customizable biomedical applications.

机构信息

Department of Radiology, Sir Run Shaw Hospital (SRRSH) of School of Medicine, Zhejiang University, Hangzhou 310027, China.

Zhejiang Key Laboratory of Smart Biomaterials and Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

Acta Biomater. 2023 Sep 15;168:617-627. doi: 10.1016/j.actbio.2023.07.026. Epub 2023 Jul 22.

Abstract

Molecular imaging of disease with multifunctional nanoparticles has improved specificity and sensitivity but also raises the complexity, potential toxicity, and cost. Here, we show a facile and degradable self-assembly β-cyclodextrin metal-organic framework (β-CD-MOF) nanoplatform for customizable multifunctional imaging. These β-CD-MOF nanoparticles were obtained with favorable morphology and size by controlling the degradation time. The β-CD-MOF were used as nanoplatforms for facile functionalization with adamantane (Ad)-modified probes through host-guest interactions between the surface β-CD units and Ad molecules. We demonstrated the method's feasibility and capability by developing various contrast agents for multiple biomedical imaging, including fluorescence imaging, magnetic resonance imaging (MRI), and computed tomography (CT) imaging. The nanoprobes showed superior performance compared to the corresponding small molecular probes, including better physio-chemical properties (e.g., about 5 times of T relaxivity for MRI, 1.2 times of Hounsfield units for CT), improved pharmacokinetics, effective tissue imaging capability, and low safety concerns. These β-CD-MOF-based nanoparticles are promising host-guest nanoplatforms for developing multifunctional and safe imaging probes. STATEMENT OF SIGNIFICANCE: Molecular imaging of disease with multifunctional nanoparticles has improved specificity and sensitivity but also raises the complexity, potential toxicity, and cost. Here, we introduce facile and degradable self-assembly β-cyclodextrin metal-organic framework (β-CD-MOF) nanoplatforms for customizable multifunctional imaging. The significance of this work includes: 1) This work reports the tailoring of MOFs nanoparticles with suitable sizes and shapes for biomedical applications through controllable morphological transition and degradation; 2) The β-CD-MOF-based host-guest nanoplatforms are facile and feasible for developing multifunctional nanoparticular contrast agents for effective tissue imaging; 3) The nanoparticular contrast agents show low safety concerns with a long-term tissue deposition similar to the small molecular probes.

摘要

多功能纳米颗粒对疾病的分子成像提高了特异性和敏感性,但也增加了复杂性、潜在毒性和成本。在这里,我们展示了一种简便且可降解的自组装β-环糊精金属有机骨架(β-CD-MOF)纳米平台,用于定制多功能成像。通过控制降解时间,获得了具有良好形态和尺寸的β-CD-MOF 纳米颗粒。β-CD-MOF 可以通过表面β-CD 单元与金刚烷(Ad)分子之间的主客体相互作用,简便地功能化得到金刚烷(Ad)修饰的探针,从而形成纳米平台。我们通过开发多种用于多种生物医学成像的对比剂,包括荧光成像、磁共振成像(MRI)和计算机断层扫描(CT)成像,证明了该方法的可行性和能力。与相应的小分子探针相比,纳米探针表现出更好的性能,包括更好的物理化学性质(例如,MRI 的 T1 弛豫率提高约 5 倍,CT 的 Hounsfield 单位提高 1.2 倍)、更好的药代动力学、有效的组织成像能力和较低的安全问题。这些基于β-CD-MOF 的纳米颗粒是开发多功能和安全成像探针的有前途的主体客体纳米平台。

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