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载复合 CD-MOF 纳米晶的微球用于药物的持续释放。

Composite CD-MOF nanocrystals-containing microspheres for sustained drug delivery.

机构信息

Center for Drug Delivery System, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 501 Haike Road, Shanghai 201203, China.

出版信息

Nanoscale. 2017 Jun 8;9(22):7454-7463. doi: 10.1039/c6nr07593b.

Abstract

Metal-organic frameworks (MOFs), which are typically embedded in polymer matrices as composites, are emerging as a new class of carriers for sustained drug delivery. Most of the MOFs and the polymers used so far in these composites, however, are not pharmaceutically acceptable. In the investigation reported herein, composites of γ-cyclodextrin (γ-CD)-based MOFs (CD-MOFs) and polyacrylic acid (PAA) were prepared by a solid in oil-in-oil (s/o/o) emulsifying solvent evaporation method. A modified hydrothermal protocol has been established which produces efficiently at 50 °C in 6 h micron (5-10 μm) and nanometer (500-700 nm) diameter CD-MOF particles of uniform size with smooth surfaces and powder X-ray diffraction patterns that are identical with those reported in the literature. Ibuprofen (IBU) and Lansoprazole (LPZ), both insoluble in water and lacking in stability, were entrapped with high drug loading in nanometer-sized CD-MOFs by co-crystallisation (that is more effective than impregnation) without causing MOF crystal degradation during the loading process. On account of the good dispersion of drug-loaded CD-MOF nanocrystals inside polyacrylic acid (PAA) matrices and the homogeneous distribution of the drug molecules within these crystals, the composite microspheres exhibit not only spherical shapes and sustained drug release over a prolonged period of time, but they also demonstrate reduced cell toxicity. The cumulative release rate for IBU (and LPZ) follows the trend: IBU-γ-CD complex microspheres (ca. 80% in 2 h) > IBU microspheres > IBU-CD-MOF/PAA composite microspheres (ca. 50% in 24 h). Importantly, no burst release of IBU (and LPZ) was observed from the CD-MOF/PAA composite microspheres, suggesting an even distribution of the drug as well as strong drug carrier interactions inside the CD-MOF. In summary, these composite microspheres, composed of CD-MOF nanocrystals embedded in a biocompatible polymer (PAA) matrix, constitute an efficient and pharmaceutically acceptable MOF-based carrier for sustained drug release.

摘要

金属-有机骨架(MOFs)通常作为复合材料嵌入聚合物基质中,作为一种新的载药系统正在出现。然而,到目前为止,这些复合材料中使用的大多数 MOFs 和聚合物都不是药用可接受的。在本报告中,通过固-油-油(s/o/o)乳化溶剂蒸发法制备了γ-环糊精(γ-CD)基 MOFs(CD-MOFs)和聚丙烯酸(PAA)的复合材料。建立了一种改良的水热方案,该方案在 50°C 下仅需 6 小时即可高效地生成具有均匀尺寸、光滑表面和粉末 X 射线衍射图案的微米(5-10μm)和纳米(500-700nm)直径 CD-MOF 颗粒,这些图案与文献中报道的图案相同。布洛芬(IBU)和兰索拉唑(LPZ)均不溶于水且稳定性差,通过共结晶(比浸渍更有效)将其以高载药量包封在纳米级 CD-MOF 中,在负载过程中不会导致 MOF 晶体降解。由于负载药物的 CD-MOF 纳米晶体在聚丙烯酸(PAA)基质中的良好分散以及药物分子在这些晶体中的均匀分布,复合微球不仅具有球形形状和长时间的持续药物释放,而且还表现出降低的细胞毒性。IBU(和 LPZ)的累积释放率遵循以下趋势:IBU-γ-CD 复合物微球(约 2 小时内 80%)>IBU 微球>IBU-CD-MOF/PAA 复合微球(约 24 小时内 50%)。重要的是,从 CD-MOF/PAA 复合微球中没有观察到 IBU(和 LPZ)的突释,这表明药物在 CD-MOF 内均匀分布以及药物载体之间的强相互作用。总之,这些由嵌入生物相容性聚合物(PAA)基质中的 CD-MOF 纳米晶体组成的复合微球,构成了一种用于持续药物释放的有效且药用可接受的 MOF 基载体。

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