Predicting the Stability of Lyophilized Human Serum Albumin Formulations Containing Sucrose and Trehalose Using Solid-State NMR Spectroscopy: Effect of Storage Temperature on 1H T1 Relaxation Times

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Abstract

In a lyophilized protein/disaccharide system, the ability of the disaccharide to form a homogeneous mixture with the protein and to slow the protein mobility dictates the stabilization potential of the formulation. Human serum albumin was lyophilized with sucrose or trehalose in histidine, phosphate, or citrate buffer. 1H T1 relaxation times were measured by solid-state NMR spectroscopy and were used to assess the homogeneity and mobility of the samples after zero, six, and twelve months at different temperatures. The mobility of the samples decreased after 6 and 12 months storage at elevated temperatures, consistent with structural relaxation of the amorphous disaccharide matrix. Formulations with sucrose had lower mobility and greater stability than formulations with trehalose.

利用固态 NMR 光谱预测含有蔗糖和曲哈糖的冻干人血清白蛋白制剂的稳定性:储存温度对 1H T1 松弛时间的影响
摘要 在冻干蛋白质/双糖体系中,双糖与蛋白质形成均匀混合物以及减缓蛋白质流动性的能力决定了制剂的稳定潜力。人血清白蛋白在组氨酸、磷酸盐或柠檬酸缓冲液中与蔗糖或曲哈蔗糖一起冻干。通过固态核磁共振光谱测定了 1H T1 驰豫时间,并用于评估样品在不同温度下零个月、六个月和十二个月后的均一性和流动性。样品在高温下储存 6 个月和 12 个月后,流动性降低,这与无定形双糖基质的结构松弛一致。蔗糖制剂的流动性较低,稳定性则优于妥尔糖制剂。
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