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Surface Acidity and Solid-State Compatibility of Excipients with an Acid-Sensitive API: Case Study of Atorvastatin Calcium

机译:具有酸敏感性API的赋形剂的表面酸度和固态相容性:阿托伐他汀钙的案例研究

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摘要

The objectives of this study were to measure the apparent surface acidity of common excipients and to correlate the acidity with the chemical stability of an acid-sensitive active pharmaceutical ingredient (API) in binary API-excipient powder mixtures. The acidity of 26 solid excipients was determined by two methods, (i) by measuring the pH of their suspensions or solutions and (ii) the pH equivalent (pHeq) measured via ionization of probe molecules deposited on the surface of the excipients. The chemical stability of an API, atorvastatin calcium (AC), in mixtures with the excipients was evaluated by monitoring the appearance of an acid-induced degradant, atorvastatin lactone, under accelerated storage conditions. The extent of lactone formation in AC-excipient mixtures was presented as a function of either solution/suspension pH or pHeq. No lactone formation was observed in mixtures with excipients having pHeq > 6, while the lactone levels were pronounced (> 0.6% after 6 weeks at 50°C/20% RH) with excipients exhibiting pHeq < 3. The three pHeq regions (> 6, 3–6, and < 3) were consistent with the reported solution pH-stability profile of AC. In contrast to the pHeq scale, lactone formation did not show any clear trend when plotted as a function of the suspension/solution pH. Two mechanisms to explain the discrepancy between the suspension/solution pH and the chemical stability data were discussed. Acidic excipients, which are expected to be incompatible with an acid-sensitive API, were identified based on pHeq measurements. The incompatibility prediction was confirmed in the chemical stability tests using AC as an example of an acid-sensitive API.Electronic supplementary materialThe online version of this article (doi:10.1208/s12249-014-0231-7) contains supplementary material, which is available to authorized users.
机译:这项研究的目的是测量常见赋形剂的表观表面酸度,并使酸度与二元API赋形剂粉末混合物中酸敏感性活性药物成分(API)的化学稳定性相关。通过两种方法确定26种固体赋形剂的酸度,(i)通过测量其悬浮液或溶液的pH值,以及(ii)通过电离沉积在赋形剂表面的探针分子测量的pH当量(pHeq)。通过在加速储存条件下监测酸诱导的降解物阿托伐他汀内酯的出现,可以评估与赋形剂混合的API阿托伐他汀钙(AC)的化学稳定性。给出了AC-赋形剂混合物中内酯形成的程度与溶液/悬浮液pH或pHeq的关系。在含有pHeq> 6的赋形剂的混合物中未观察到内酯形成,而内酯水平显着(在50°C / 20%RH下6周后> 0.6%),赋形剂的pHeq <3.三个pHeq区域(> 6 ,3–6和<3)与AC报道的溶液pH稳定性曲线一致。与pHeq标度相反,当将其作为悬浮液/溶液pH的函数作图时,内酯的形成没有显示任何明显的趋势。讨论了两种解释悬浮液/溶液pH值与化学稳定性数据之间差异的机理。根据pHeq测量值确定了预期与酸敏感性API不相容的酸性赋形剂。不相容性预测在以AC为酸敏感API的化学稳定性测试中得到了证实。电子补充材料本文的在线版本(doi:10.1208 / s12249-014-0231-7)包含补充材料,可以通过以下途径获得给授权用户。

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