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Kinetics of the esterification of active pharmaceutical ingredients containing carboxylic acid functionality in polyethylene glycol: Formulation implications

机译:聚乙二醇中含有羧酸官能团的活性药物成分的酯化动力学:配方意义

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摘要

Polyethylene glycols (PEGs) are attractive as excipients in the manufacture of drug products because they are water soluble and poorly immunogenic. They are used in various pharmaceutical preparations. However, because of their terminal hydroxyl groups, PEGs can participate in esterification reactions. In this study, kinetics of two active pharmaceutical ingredients, cetirizine and indomethacin possessing carboxylic acid functionality, has been studied in PEG 400 and PEG 1000 at 50C, 60C, 70C, and 80C. HPLC-UV was applied for the determination of concentrations in the kinetic studies, whereas HPLC-MS was used to identify reaction products. The esterification reactions were observed to be reversible. A second-order reversible kinetic model was applied and rate constants were determined. The rate constants demonstrated that cetirizine was esterified about 240 times faster than indomethacin at 80C. The shelf-life for cetirizine in a PEG 400 formulation at 25C expressed as t95% was predicted to be only 30 h. Further, rate constants for esterification of cetirizine in PEG 1000 in relation to PEG 400 decreased by a factor of 10, probably related to increased viscosity. However, it is important to be aware of this drug-excipient interaction, as it can reduce the shelf-life of a low-average molecular weight PEG formulation considerably.
机译:聚乙二醇(PEG)作为药物生产中的赋形剂很有吸引力,因为它们是水溶性的,免疫原性很差。它们用于各种药物制剂中。但是,由于它们的末端羟基,PEG可以参与酯化反应。在这项研究中,已在50℃,60℃,70℃和80℃的PEG 400和PEG 1000中研究了两种具有羧酸功能的活性药物成分西替利嗪和消炎痛的动力学。 HPLC-UV用于动力学研究中浓度的测定,而HPLC-MS用于鉴定反应产物。观察到酯化反应是可逆的。应用了二阶可逆动力学模型,并确定了速率常数。速率常数表明,在80℃下,西替利嗪的酯化速度比消炎痛快约240倍。西替利嗪在PEG 400制剂中在25℃下的保质期表示为t95%,预计只有30小时。此外,相对于PEG 400,在PEG 1000中西替利嗪酯化的速率常数降低了10倍,这可能与粘度增加有关。但是,重要的是要意识到这种药物-赋形剂的相互作用,因为它会大大降低低平均分子量PEG制剂的保质期。

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