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Inclusion complex of methyl-β-cyclodextrin and olanzapine as potential drug delivery system for schizophrenia

机译:甲基-β-环糊精与奥氮平的包合物对精神分裂症的潜在给药系统

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Olanzapine (OLP), the most important atypical antipsychotic drug of the new generation, a high cost drug, has low aqueous solubility, affecting its dissolution and absorption, its complexation with modified cyclodextrins (CDs) is designed to achieve novel vectorization systems with higher solubility, consequently higher bioavailability. From the CD selection, among β-CD, methyl-β-CD (MβCD) and hydroxypropyl-β-CD, it was obtained a phase solubility diagram suggesting a 1:1 (mol:mol) OLP-CD stoichiometry and complexation constants of 966.9,149.4 and 91.1 L/mol, respectively. The MβCD was selected for the inclusion complexes (IC) attainment, a physical mixture (PM) and a rotatory evaporator product (ROE). The analysis showed differences in the structure, morphology and performance of OLP, MβCD, PM and ROE, revealing the occurrence of interactions between drug and CD. The ROE presented the higher dissolution efficiency and stability. The results suggest that the IC was formation, being a technological resource efficient and profitable for drug delivery.
机译:奥氮平(OLP)是新一代最重要的非典型抗精神病药物,是一种成本高昂的药物,具有低水溶性,影响其溶解和吸收,其与修饰的环糊精(CDs)的络合作用旨在获得具有更高溶解度的新型载体化系统,因此具有更高的生物利用度。从CD的选择中,在β-CD,甲基-β-CD(MβCD)和羟丙基-β-CD中,得到的相溶度图表明OLLP-CD的化学计量比为1:1(mol:mol),络合常数为966.9、149.4和91.1 L / mol。选择MβCD以获得包合物(IC),物理混合物(PM)和旋转蒸发仪产品(ROE)。分析显示OLP,MβCD,PM和ROE在结构,形态和性能上存在差异,从而揭示了药物与CD之间相互作用的发生。 ROE表现出更高的溶解效率和稳定性。结果表明,IC正在形成,是一种有效的技术资源,可以为药物输送带来利润。

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