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常见药用辅料中氢过氧化物的评估

Evaluation of hydroperoxides in common pharmaceutical excipients.

作者信息

Wasylaschuk Walter R, Harmon Paul A, Wagner Gabriella, Harman Amy B, Templeton Allen C, Xu Hui, Reed Robert A

机构信息

Pharmaceutical Analysis Chemistry, Merck Research Laboratories, Merck & Co., Inc., P.O. Box 4, WP78-210, West Point, PA 19486, USA.

出版信息

J Pharm Sci. 2007 Jan;96(1):106-16. doi: 10.1002/jps.20726.

Abstract

While the physical properties of pharmaceutical excipients have been well characterized, impurities that may influence the chemical stability of formulated drug product have not been well studied. In this work, the hydroperoxide (HPO) impurity levels of common pharmaceutical excipients are measured and presented for both soluble and insoluble excipients. Povidone, polysorbate 80 (PS80), polyethylene glycol (PEG) 400, and hydroxypropyl cellulose (HPC) were found to contain substantial concentrations of HPOs with significant lot-to-lot and manufacturer-to-manufacturer variation. Much lower HPO levels were found in the common fillers, like microcrystalline cellulose and lactose, and in high molecular weight PEG, medium chain glyceride (MCG), and poloxamer. The findings are discussed within the context of HPO-mediated oxidation and formulating drug substance sensitive to oxidation. Of the four excipients with substantial HPO levels, povidone, PEG 400, and HPC contain a mixture of hydrogen peroxide and organic HPOs while PS80 contains predominantly organic HPOs. The implications of these findings are discussed with respect to the known manufacturing processes and chemistry of HPO reactivity and degradation kinetics. Defining critical HPO limits for excipients should be driven by the chemistry of a specific drug substance or product and can only be defined within this context.

摘要

虽然药用辅料的物理性质已得到充分表征,但可能影响制剂药品化学稳定性的杂质尚未得到充分研究。在这项工作中,对常见药用辅料的氢过氧化物(HPO)杂质水平进行了测定,并给出了可溶性和不溶性辅料的测定结果。发现聚维酮、聚山梨酯80(PS80)、聚乙二醇(PEG)400和羟丙基纤维素(HPC)含有大量的HPO,批次间和厂家间存在显著差异。在常见的填充剂如微晶纤维素和乳糖以及高分子量PEG、中链甘油酯(MCG)和泊洛沙姆中发现的HPO水平要低得多。在HPO介导的氧化以及对氧化敏感的原料药制剂的背景下对这些发现进行了讨论。在HPO水平较高的四种辅料中,聚维酮、PEG 400和HPC含有过氧化氢和有机HPO的混合物,而PS80主要含有有机HPO。针对已知的制造工艺以及HPO反应性和降解动力学的化学性质对这些发现的影响进行了讨论。确定辅料的关键HPO限度应由特定原料药或产品的化学性质决定,并且只能在此背景下进行定义。

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