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Metal-Organic Frameworks (MOFs)-Based Nanomaterials for Drug Delivery

机译:金属有机框架(MOF) - 基于药物递送的纳米材料

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摘要

The composition and topology of metal-organic frameworks (MOFs) are exceptionally tailorable; moreover, they are extremely porous and represent an excellent Brunauer–Emmett–Teller (BET) surface area (≈3000–6000 m2·g−1). Nanoscale MOFs (NMOFs), as cargo nanocarriers, have increasingly attracted the attention of scientists and biotechnologists during the past decade, in parallel with the evolution in the use of porous nanomaterials in biomedicine. Compared to other nanoparticle-based delivery systems, such as porous nanosilica, nanomicelles, and dendrimer-encapsulated nanoparticles, NMOFs are more flexible, have a higher biodegradability potential, and can be more easily functionalized to meet the required level of host–guest interactions, while preserving a larger and fully adjustable pore window in most cases. Due to these unique properties, NMOFs have the potential to carry anticancer cargos. In contrast to almost all porous materials, MOFs can be synthesized in diverse morphologies, including spherical, ellipsoidal, cubic, hexagonal, and octahedral, which facilitates the acceptance of various drugs and genes.
机译:金属 - 有机框架(MOF)的组成和拓扑结构特别定制;此外,它们非常多孔,代表优秀的Brunauer-Emmett-exers(Bet)表面积(≈3000-6000m2·g-1)。作为货物纳米载体的纳米级MOFS(NMOFS)越来越多地引起了在过去十年中的科学家和生物技术学家的注意力,与生物医学中的多孔纳米材料在使用中的演变平行。与其他基于纳米粒子的递送系统相比,例如多孔纳米粒子,纳米镍和树枝状聚合物 - 包封的纳米颗粒,NMOF是更柔韧的,具有更高的生物降解性电位,并且可以更容易地官能化以满足所需的宿主互动水平,在大多数情况下保留更大且完全可调节的孔窗。由于这些独特的特性,NMOFS有可能携带抗癌尸体。与几乎所有多孔材料相比,MOF可以在不同的形态中合成,包括球形,椭圆形,立方,六边形和八面体,促进了各种药物和基因的接受。

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