Lyophilization closures for protein based drugs.

F DeGrazio, K Flynn
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Abstract

Rubber stopper formulations which are currently used as lyophilization stoppers vary widely in their capacities to absorb and release moisture. Release of moisture from the stopper over the shelf life of the product may result in drug degradation for extremely low cake weight products. The degree to which rubber formulations absorb water is dependent upon the components of these formulations. Independently, polymers and fillers absorb water during autoclave cycles to varying levels depending upon such factors as the solubility, structure, possibility of chemical reactions and impurity levels of these materials. Once combined into a stopper formulation, the raw materials can react to form species which further promote absorption. Data is presented comparing the absorption characteristics of low versus high absorbent rubber formulations. The release of moisture from these formulas when stoppered on vials containing dry product is also discussed.

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蛋白质类药物的冻干封包。
目前用作冻干塞的橡胶塞配方在吸收和释放水分的能力方面差别很大。在产品的保质期内,从瓶塞中释放的水分可能会导致极低饼重产品的药物降解。橡胶配方吸水的程度取决于这些配方的成分。独立地,聚合物和填料在高压灭菌器循环中吸收水的程度不同,这取决于这些材料的溶解度、结构、化学反应的可能性和杂质水平等因素。一旦组合成一个塞子配方,原料可以反应形成物种,进一步促进吸收。介绍了低吸水性橡胶配方与高吸水性橡胶配方的吸声特性比较数据。还讨论了这些配方在装干产品的小瓶上加塞时水分的释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Evaluating out-of-specification laboratory results. Simplifying and improving process validation. Depyrogenation of pharmaceutical solutions using submicron and ultrafilters. USP perspectives on particle contamination of injectable products. Moisture measurement: a new method for monitoring freeze-drying cycles.
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