首页> 外文期刊>Pharmaceutical development and technology >Degradation of a lyophilized formulation of BMS-204352: identification of degradants and role of elastomeric closures.
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Degradation of a lyophilized formulation of BMS-204352: identification of degradants and role of elastomeric closures.

机译:BMS-204352的冻干制剂的降解:降解剂的鉴定和弹性封闭剂的作用。

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摘要

The purpose of this study was to identify two degradation products formed in the parenteral lyophilized formulation of BMS-204352, investigate the possible role of elastomeric closures in their formation, and develop a strategy to minimize/control their formation. The first degradant was identified as the hydroxymethyl derivative (formaldehyde adduct, BMS-215842) of the drug substance formed by the reaction of BMS-204352 with formaldehyde. Structure confirmation was based on liquid chromatography/mass spectroscopy (LC/MS), nuclear magnetic resonance (NMR), and chromatographic comparison to an authentic sample of the hydroxymethyl degradation product, BMS-215842. To confirm the hypothesis that formaldehyde originated from the rubber closure, migrated into the product, and reacted with BMS-204352 drug substance to form the hydroxymethyl degradant, lyophilized drug product was manufactured, the vials were stoppered with two different rubber closure formulations, and its stability was monitored. The formaldehyde adduct degradant was observed only in the drug product vials stoppered with one of the rubber closures that was evaluated. Although formaldehyde has not been detected historically as leachable and is not an added ingredient in the rubber formulation, information obtained from the stopper manufacturer indicated that the reinforcing agent used in the stopper formulation may be a potential source of formaldehyde. The second degradant was identified as the desfluoro hydroxy analog (BMS-188929) based on LC/MS, NMR, and chromatographic comparison to an authentic sample of the desfluoro hydroxy degradation product.
机译:这项研究的目的是确定在BMS-204352肠胃外冻干制剂中形成的两种降解产物,研究弹性体封闭物在其形成过程中的可能作用,并制定出最小化/控制其形成的策略。第一降解物被鉴定为通过BMS-204352与甲醛反应形成的原料药的羟甲基衍生物(甲醛加合物,BMS-215842)。结构确认基于液相色谱/质谱(LC / MS),核磁共振(NMR)和色谱图,与羟甲基降解产物BMS-215842的真实样品进行比较。为证实以下假设:甲醛是从橡胶瓶盖中迁移出来进入产品中并与BMS-204352药物反应形成羟甲基降解剂,制得了冻干的药物产品,将小瓶塞入了两种不同的橡胶瓶盖制剂,并将其瓶塞监测稳定性。仅在用被评估的橡胶盖之一塞住的药品瓶中观察到甲醛加合物降解物。尽管历史上未检测到甲醛可浸出并且不是橡胶配方中的添加成分,但从塞子制造商处获得的信息表明,塞子配方中使用的增强剂可能是甲醛的潜在来源。根据LC / MS,NMR和与脱氟羟基降解产物的真实样品的色谱比较,将第二种降解物鉴定为脱氟羟基类似物(BMS-188929)。

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