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首页> 外文期刊>International Journal of Pharmaceutics >Antisolvent precipitation of novel xylitol-additive crystals to engineer tablets with improved pharmaceutical performance
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Antisolvent precipitation of novel xylitol-additive crystals to engineer tablets with improved pharmaceutical performance

机译:具有改善的药物性能的新型木糖醇添加剂晶体的抗溶剂沉淀到工程片剂

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摘要

The purpose of this work was to develop stable xylitol particles with modified physical properties, improved compactibility and enhanced pharmaceutical performance without altering polymorphic form of xylitol. Xylitol was crystallized using antisolvent crystallization technique in the presence of various hydrophilic polymer additives, i.e., polyethylene glycol (PEG), polyvinylpyrrolidone (PVP) and polyvinyl alcohol (PVA) at a range of concentrations. The crystallization process did not influence the stable polymorphic form or true density of xylitol. However, botryoidal-shaped crystallized xylitols demonstrated different particle morphologies and lower powder bulk and tap densities in comparison to subangular-shaped commercial xylitol. Xylitol crystallized without additive and xylitol crystallized in the presence of PVP or PVA demonstrated significant improvement in hardness of directly compressed tablets; however, such improvement was observed to lesser extent for xylitol crystallized in the presence of PEG. Crystallized xylitols produced enhanced dissolution profiles for indomethacin in comparison to original xylitol. The influence of additive concentration on tablet hardness was dependent on the type of additive, whereas an increased concentration of all additives provided an improvement in the dissolution behavior of indomethacin. Antisolvent crystallization using judiciously selected type and concentration of additive can be a potential approach to prepare xylitol powders with promising physicomechanical and pharmaceutical properties. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项工作的目的是开发具有改性物理性质的稳定的木糖醇颗粒,改善了可调整性和增强的药物性能,而不改变木糖醇的多态形式。在各种亲水性聚合物添加剂,即聚乙二醇(PEG),聚乙烯吡咯烷酮(PVP)和聚乙烯醇(PVA)的存在下,使用抗溶剂结晶技术结晶。在一系列浓度下,使用抗溶剂结晶技术结晶。结晶过程不影响稳定的木糖醇的多晶型形态或真正的密度。然而,与基间形状的商业木糖醇相比,Botryoidal形状的结晶木糖醇表现出不同的颗粒形态和下粉体块状,并敲击密度。在没有添加剂的情况下结晶的木糖醇和在PVP或PVA存在下结晶的木糖醇表现出直接压缩片的硬度显着改善;然而,观察到这种改进在PEG存在下结晶的木糖醇较小的程度。与原始木糖醇相比,结晶的木糖醇产生了用于吲哚美辛的增强溶解曲线。添加剂浓度对片剂硬度的影响取决于添加剂的类型,而所有添加剂的浓度增加提供了吲哚美辛的溶解行为的改善。使用明智地选择的抗溶剂结晶和添加剂的浓度可以是制备具有有前途的物理机械和药物性质的木糖醇粉末的潜在方法。 (c)2014 Elsevier B.V.保留所有权利。

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