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基于磁性纳米粒子和金属有机框架的纳米复合材料用于治疗、诊断和治疗诊断学。

Nanocomposites Based on Magnetic Nanoparticles and Metal-Organic Frameworks for Therapy, Diagnosis, and Theragnostics.

作者信息

Picchi Darina Francesca, Biglione Catalina, Horcajada Patricia

机构信息

Advanced Porous Materials Unit, IMDEA Energy Institute, Móstoles, 28935 Madrid, Spain.

出版信息

ACS Nanosci Au. 2023 Dec 23;4(2):85-114. doi: 10.1021/acsnanoscienceau.3c00041. eCollection 2024 Apr 17.

Abstract

In the last two decades, metal-organic frameworks (MOFs) with highly tunable structure and porosity, have emerged as drug nanocarriers in the biomedical field. In particular, nanoscaled MOFs (nanoMOFs) have been widely investigated because of their potential biocompatibility, high drug loadings, and progressive release. To enhance their properties, MOFs have been combined with magnetic nanoparticles (MNPs) to form magnetic nanocomposites (MNP@MOF) with additional functionalities. Due to the magnetic properties of the MNPs, their presence in the nanosystems enables potential combinatorial magnetic targeted therapy and diagnosis. In this Review, we analyze the four main synthetic strategies currently employed for the fabrication of MNP@MOF nanocomposites, namely, mixing, formation of MNPs in presynthesized MOF, formation of MOFs in the presence of MNPs, and layer-by-layer methods. Additionally, we discuss the current progress in bioapplications, focusing on drug delivery systems (DDSs), magnetic resonance imaging (MRI), magnetic hyperthermia (MHT), and theragnostic systems. Overall, we provide a comprehensive overview of the recent advances in the development and bioapplications of MNP@MOF nanocomposites, highlighting their potential for future biomedical applications with a critical analysis of the challenges and limitations of these nanocomposites in terms of their synthesis, characterization, biocompatibility, and applicability.

摘要

在过去二十年中,具有高度可调节结构和孔隙率的金属有机框架(MOF)已成为生物医学领域的药物纳米载体。特别是,纳米级MOF(nanoMOF)因其潜在的生物相容性、高药物负载量和缓释性能而受到广泛研究。为了增强其性能,MOF已与磁性纳米颗粒(MNP)结合,形成具有附加功能的磁性纳米复合材料(MNP@MOF)。由于MNP的磁性,它们在纳米系统中的存在使得潜在的联合磁靶向治疗和诊断成为可能。在本综述中,我们分析了目前用于制备MNP@MOF纳米复合材料的四种主要合成策略,即混合法、在预合成的MOF中形成MNP、在MNP存在下形成MOF以及层层组装法。此外,我们讨论了生物应用方面的当前进展,重点关注药物递送系统(DDS)、磁共振成像(MRI)、磁热疗(MHT)和诊疗系统。总体而言,我们全面概述了MNP@MOF纳米复合材料在开发和生物应用方面的最新进展,强调了它们在未来生物医学应用中的潜力,并对这些纳米复合材料在合成、表征、生物相容性和适用性方面的挑战和局限性进行了批判性分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c01/11027209/1bb4ebf6bcb2/ng3c00041_0001.jpg

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