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Formulation factors affecting the isomerization rate of betamethasone-17-valerate in a developmental hydrophilic cream - a HPLC and microscopy based stability study

机译:影响发育亲水乳膏中倍甲塞酮-17-戊烯异构化率的配方因子 - 一种HPLC和基于显微镜的稳定性研究

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Abstract The formulation of betamethasone-17-valerate (BV) into topical medicines presents a significant challenge for the formulation chemist. The substance is susceptible to acid and base catalyzed isomerization in aqueous environments, which results in valerate transesterification from carbon 17 to carbon 21 of the steroid ring system. This acyl migration process is of significant clinical importance since the 21-valerate ester possesses only a fraction of the potency of the 17-valerate parent compound. Isomerization of BV should therefore be reduced to a minimum through design of a suitable drug vehicle. In this study, the effect of varying the concentration of several excipient components on the isomerization rate of betamethasone valerate in a model hydrophilic cream has been investigated. These excipients include the emulsifier macrogolstearylether-20/21, the co-emulsifier cetylstearyl alcohol and the thickening agent hydroxyl propyl methylcellulose. Additionally, the influence of pH, the presence of the antioxidant, alpha-tocopherol, as well as the chelating agent, disodium edetate, on the stability of the formulation have been investigated. Trial drug product formulations, which were designed to investigate the influence of the above-mentioned components/parameters were manufactured and their stability was tested according to current ICH Guidelines. The content, purity and crystalline structure of the active substance in these formulations was analyzed by a combination of HPLC and microscopy techniques. The study demonstrates that the rate of isomerization of betamethasone valerate depends significantly on the concentration of emulsifier used in the cream formulation. At higher concentrations of emulsifier the isomerization proceeds rapidly with significant degradation over a period of weeks, whereas at lower concentrations significant degradation may not be observed, even after several years' storage. The influence of the emulsifier has been shown to be independent of the pH value of the aqueous phase of the cream. These findings have not been reported in previous literature reports on this topic, which have tended to focus on the influence of pH. The results are likely to be of interest to pharmaceutical chemists working on the formulation of glucocorticoids as well as to local- and hospital pharmacists who carry out the practice of dilution of proprietary corticoid preparations, where the choice of diluent is likely to be critical for ensuring the stability of the diluted product.
机译:摘要将贝塞米松-17-戊烯(BV)的制剂转化为局部药物对配方化学家提供了重大挑战。该物质易于酸和碱催化在水性环境中的催化异构化,这导致从类固醇环系统的碳17-碳21中的值酯交换。该酰基迁移过程具有显着的临床重要性,因为21-戊酯仅具有17-戊母化合物的效力的一小部分。因此,BV的异构化应通过适合的药物载体的设计减少到最小值。在本研究中,研究了改变几种赋形剂组分浓度对模型亲水性乳膏中倍甲塞酮符合物的异构化速率的影响。这些赋形剂包括乳化剂癌丙烯醚-20 / 21,共乳化剂十六烷基醇和增稠剂羟基丙基甲基纤维素。另外,研究了pH的影响,抗氧化剂,α-生育酚以及螯合剂,乙酸二钠,对制剂的稳定性进行了研究。试验药物制剂,设计用于研究上述组分/参数的影响,并根据当前的ICH指南测试它们的稳定性。通过HPLC和显微镜技术的组合分析了这些制剂中活性物质的含量,纯度和结晶结构。该研究表明,脂蛋白酮符合率的异构化率显着取决于奶油制剂中使用的乳化剂的浓度。在较高浓度的乳化剂处,异构化在几周内快速进行,而在几周后,较低浓度可能无法观察到显着降解,即使在几年的储存之后也可能无法观察到显着降解。已显示乳化剂的影响与乳膏水相的pH值无关。这些调查结果尚未在此主题的先前文献报告中报告,这倾向于关注pH的影响。结果可能感兴趣,用于制定糖皮质激素以及局部和医院药剂师,以及进行专有皮质醇制剂稀释的实践的局部和医院药剂师,其中稀释剂的选择可能对确保至关重要稀释产物的稳定性。

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