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Hydrophilic and hydrophobic cyclodextrins in a new sustained release oral formulation of nicardipine: in vitro evaluation and bioavailability studies in rabbits

机译:尼卡地平新型缓释口服制剂中的亲水性和疏水性环糊精:兔的体外评估和生物利用度研究

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摘要

The feasibility of using complexes with cyclodextrins (CDs) in nicardipine (NC) controlled delivery has been examined, with a view to extending the pharmaceutical applications spectrum of these carriers. For a fast release fraction, a hydrophilic [beta]-cyclodextrin derivative (hydroxypropyl-[beta]-cyclodextrin) was employed to form a water-soluble complex. For the sustained-releasing portion, triacetyl-[beta]-cyclodextrin (TA[beta]CD) was used to provide complexes with appropriate hydrophobicity. An optimal formulation was designed by the combination of each fraction in different mixing ratios. The release behaviour of the complexes, as well as of their mixtures, was examined in simulated gastric (pH 1.2) and intestinal (pH 6.8) fluids. The formulations released the drug rapidly at the initial stage, followed by a slow release. The drug release rate was markedly retarded in the increasing order of the amount of NC/TA[beta]CD complex. When NC was administered to rabbits, its absorption was very rapid with a short elimination half-life, while a prolonged maintenance of the plasma levels was obtained for the two selected formulations. The drug bioavailability was considerably improved especially after the administration of the mixture of hydrophilic and hydrophobic complexes, when compared with the NC/TA[beta]CD complex. The results suggested that the critical combination of hydrophilic and hydrophobic CDs complexes, in appropriate ratios, could be a promising drug delivery system with a prolonged therapeutic effect coupled with a more balanced bioavailability.
机译:为了扩大这些载体的药物应用范围,已经研究了在尼卡地平(NC)控制的递送中使用与环糊精(CD)配合物的可行性。对于快速释放级分,使用亲水性β-环糊精衍生物(羟丙基-β-环糊精)形成水溶性复合物。对于持续释放部分,使用三乙酰基-β-环糊精(TAβCD)提供具有适当疏水性的复合物。通过将每个部分以不同的混合比例进行组合来设计最佳配方。在模拟的胃液(pH 1.2)和肠液(pH 6.8)中检查了复合物及其混合物的释放行为。该制剂在初始阶段迅速释放药物,随后缓慢释放。药物释放速率以NC /TAβCD复合物的量的增加顺序显着延迟。当将NC施用给兔子时,其吸收非常快,消除半衰期很短,而两种选定配方的血浆水平得到了长期维持。与NC /TAβCD复合物相比,尤其是在亲水和疏水复合物混合物给药后,药物的生物利用度得到了显着改善。结果表明,适当比例的亲水性和疏水性CD复合物的关键组合可能是一种有希望的药物递送系统,具有延长的治疗效果以及更均衡的生物利用度。

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