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验证金属有机骨架纳米粒子在多种生物医学应用中的纳米安全性。

Validating Metal-Organic Framework Nanoparticles for Their Nanosafety in Diverse Biomedical Applications.

机构信息

Department of Chemistry and Center for NanoScience (CeNS), University of Munich (LMU), 81377, Munich, Germany.

Department of Pharmacy, University of Munich (LMU), 81377, Munich, Germany.

出版信息

Adv Healthc Mater. 2017 Jan;6(2). doi: 10.1002/adhm.201600818. Epub 2016 Nov 15.

Abstract

Metal-organic frameworks (MOFs) are promising platforms for the synthesis of nanoparticles for diverse medical applications. Their fundamental design principles allow for significant control of the framework architecture and pore chemistry, enabling directed functionalization for nanomedical applications. However, before applying novel nanomaterials to patients, it is imperative to understand their potential health risks. In this study, the nanosafety of different MOF nanoparticles is analyzed comprehensively for diverse medical applications. The authors first evaluate the effects of MOFs on human endothelial and mouse lung cells, which constitute a first line of defense upon systemic blood-mediated and local lung-specific applications of nanoparticles. Second, we validated these MOFs for multifunctional surface coatings of dental implants using human gingiva fibroblasts. Moreover, biocompatibility of MOFs is assessed for surface coating of nerve guidance tubes using human Schwann cells and rat dorsal root ganglion cultures. The main finding of this study is that the nanosafety and principal suitability of our MOF nanoparticles as novel agents for drug delivery and implant coatings strongly varies with the effector cell type. We conclude that it is therefore necessary to carefully evaluate the nanosafety of MOF nanomaterials with respect to their particular medical application and their interacting primary cell types, respectively.

摘要

金属-有机骨架(MOFs)是合成用于各种医学应用的纳米粒子的有前途的平台。它们的基本设计原则允许对骨架结构和孔化学进行重大控制,从而实现纳米医学应用的定向功能化。然而,在将新型纳米材料应用于患者之前,了解其潜在的健康风险至关重要。在这项研究中,全面分析了不同 MOF 纳米粒子在各种医学应用中的纳米安全性。作者首先评估了 MOFs 对人内皮细胞和小鼠肺细胞的影响,这些细胞构成了系统血液介导和局部肺特异性应用纳米粒子时的第一道防线。其次,我们使用人牙龈成纤维细胞验证了这些 MOFs 在牙种植体多功能表面涂层中的应用。此外,使用人施万细胞和大鼠背根神经节培养物评估了 MOF 对神经引导管表面涂层的生物相容性。这项研究的主要发现是,我们的 MOF 纳米粒子作为新型药物输送和植入物涂层的纳米安全性和主要适用性,强烈取决于效应细胞类型。我们得出的结论是,因此有必要根据特定的医学应用及其相互作用的主要细胞类型,分别仔细评估 MOF 纳米材料的纳米安全性。

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