基于黄酮类化合物的静脉保护剂:剂型、生物制药特性、工艺特点

E. Stepanova, I. Remezova, A. M. Shevchenko, A. Morozov, V. K. Maltseva
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摘要

微粉纯化黄酮类化合物(MPFF)是原始的促静脉药物。其上市形式(Detralex®)由90%的薯蓣皂苷和10%的其他类黄酮组成。它被称为橙皮苷,是当今使用最广泛的药物。地奥司明和橙皮苷是大多数静脉活性药物的一部分,它们是少量水溶性化合物,这一特点影响了它们的临床疗效。增加这些化合物的溶解度从而提高生物利用度的方法之一是将活性成分微粉化。本研究的目的是在溶出度试验中比较测定含生物类黄酮组分药物的动力学和溶出效率,并分析微粉化程度及其对工艺和生物制药参数的影响。材料和方法。采用高效液相色谱法测定其生物药物释放谱。按照《国家药典》第十四版的方法测定其崩解度、颗粒形状和粒径特征。使用薯蓣皂苷和橙皮苷创建的对象,已被详细考虑。通报了与相应剂型有关的技术溶液的作用。通过选择基于高效液相色谱的释放控制方法,建立了详细的生物制药特性。该组药物均具有较低的水溶性,使得Detralex®的最大生物利用度约为1.26%;其他分析模型均不超过0.2%。在被分析对象(片剂)中,Detralex®的释放率居首位。从整体释放量指标来看,实际释放量偏低,这与活性物质水溶性较差有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PHLEBOPROTECTORS BASED ON FLAVONOIDS: DOSAGE FORMS, BIOPHARMACEUTICAL CHARACTERISTICS, TECHNOLOGICAL FEATURES
Micronized purified flavonoid fraction (MPFF) is the original phlebotropic drug. Its marketed form (Detralex®) consists of 90% diosmin and 10% of other flavonoids. Calculated as hesperidin, it is the most widely used drug today. Diosmin and hesperidin, which are parts of the majority of venoactive drugs, are sparingly water-soluble compounds, and this feature can effect on their clinical efficacy. One of the ways to increase the solubility of these compounds leading to an increase in bioavailability, is the micronization of the active ingredients.The aim of the investigation is a comparative determination of the dynamics and dissolution efficiency of the drugs containing bioflavonoid fractions in the dissolution test, as well as the analysis of the micronization degree and its impact on technology and biopharmaceutical parameters.Materials and methods. A biopharmaceutical release profile was determined using HPLC. Disintegration, characteristics of the shape and size of the tablets’ particles were determined according to the methods of the State Pharmacopoeia of the XIV-th edition.Results. The objects created with the use of diosmin and hesperidin, have been considered in detail. The role of technological solutions in relation to the corresponding dosage forms is notified. Detailed biopharmaceutical characteristics have been established with a choice of HPLC-based release control methodology. All the drugs in this group have a low water solubility leading to the maximum bioavailability for Detralex® which is about 1.26%; and no more than 0.2% for other analyzed models.Conclusion. Detralex® dominates among the analyzed objects (tablets) in terms of the release rate. With regard to the overall quantitative indicators of release, the actual numbers are quite low, which is associated with the poor water solubility of the active substances.
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