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Permeability Behavior of Nanocrystalline Solid Dispersion of Dipyridamole Generated Using NanoCrySP Technology

机译:用NanoCrySP技术产生的双嘧达莫纳米晶固体分散体的渗透行为

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摘要

Nanocrystals research has been an area of significant interest lately, providing oral bioavailability benefits to solubility- and/or dissolution rate-limited drugs. Drug nanocrystals are generated using top-down or bottom-up technologies. Combination technologies (Nanoedge, Nanopure XP and SmartCrystal) have been recently developed to generate nanocrystals of improved properties. Our lab has also contributed in this field by providing a ‘novel’ platform technology, NanoCrySP, for the generation of nanocrystals. NanoCrySP-generated nanocrystals have improved the oral bioavailability of various molecules. In this study, we aim to assess the permeability behavior of nanocrystals generated by NanoCrySP. Three samples of Dipyridamole (DPM) drug were used in this study: (1) DPM (micron-sized powder), (2) nanocrystals of DPM (NS), generated by media milling (as control) and, (3) nanocrystalline solid dispersion containing DPM (NSD) in the matrix of mannitol (MAN), generated using NanoCrySP technology. In vitro (Caco-2 cell lines) and ex vivo (everted gut sac) studies were conducted in this work. Cellular permeability (Papp) from apical-to-basolateral side in Caco-2 cell monolayer was found to be in the order NS > NSD > DPM, which was the same as their apparent solubility values. Higher Papp from a basolateral-to-apical side suggested a significant contribution of the P-gp efflux transport for DPM, while NS exhibited much higher inhibition of the efflux mechanism than NSD. Both NS and NSD showed higher permeation from the jejunum region in the ex vivo everted gut sac study. Interestingly, Papp of NSD was similar to NS in ex vivo everted gut sac model, however, NSD showed higher mucoadhesion than NS and DPM in this study.
机译:近年来,纳米晶体的研究一直是一个重要的领域,它为溶解度和/或溶解速率受限的药物提供了口服生物利用度的益处。药物纳米晶体是使用自上而下或自下而上的技术生成的。最近已经开发出组合技术(Nanoedge,Nanopure XP和SmartCrystal)来生成性能提高的纳米晶体。我们的实验室还通过提供用于生成纳米晶体的“新型”平台技术NanoCrySP在这一领域做出了贡献。 NanoCrySP生成的纳米晶体改善了各种分子的口服生物利用度。在这项研究中,我们旨在评估NanoCrySP生成的纳米晶体的渗透行为。在这项研究中使用了三个嘧菌胺(DPM)药物样品:(1)DPM(微米级粉末),(2)DPM(NS)纳米晶体,通过介质研磨(作为对照)生成,以及(3)纳米晶体固体使用NanoCrySP技术生成的在甘露醇(MAN)基质中含有DPM(NSD)的分散体。在这项工作中进行了体外(Caco-2细胞系)和离体(肠外翻囊)研究。发现Caco-2细胞单层从顶侧到基底外侧的细胞通透性(Papp)依次为NS> NSD> DPM,这与它们的表观溶解度值相同。从基底外侧到顶侧的较高的Papp表明,P-gp外排转运对DPM有显着贡献,而NS对外排机制的抑制作用比NSD高得多。在离体外翻肠囊研究中,NS和NSD均显示出较高的从空肠区域的渗透。有趣的是,在离体外翻肠囊模型中,NSD的Papp与NS相似,但在这项研究中,NSD的黏膜黏附性高于NS和DPM。

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