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Thermal Gradient Mid- and Far-Infrared Spectroscopyas Tools for Characterization of Protein Carbohydrate Lyophilizates

机译:热梯度中红外和远红外光谱作为表征蛋白质冻干物的工具

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摘要

Protein drugs play an important role in modern day medicine. Typically, these proteins are formulated as liquids requiring cold chain processing. To circumvent the cold chain and achieve better storage stability, these proteins can be dried in the presence of carbohydrates. We demonstrate that thermal gradient mid- and far-infrared spectroscopy (FTIR and THz-TDS, respectively) can provide useful information about solid-state protein carbohydrate formulations regarding mobility and intermolecular interactions. A model protein (BSA) was lyophilized in the presence of three carbohydrates with different size and protein stabilizing capacity. A gradual increase in mobility was observed with increasing temperature in formulations containing protein and/or larger carbohydrates (oligo- or polysaccharides), lacking a clear onset of fast mobility as was observed for smaller molecules. Furthermore, both techniques are able to identify the glass transition temperatures (Tg) of the samples. FTIR provides additional information as it can independently monitor changes in protein and carbohydrate bands at the Tg. Lastly, THz-TDS confirmsprevious findings that protein–carbohydrate interactions decreasewith increasing molecular weight of the carbohydrate, which resultsin decreased protein stabilization.
机译:蛋白药物在现代医学中起着重要作用。通常,将这些蛋白质配制成需要冷链处理的液体。为了绕过冷链并获得更好的存储稳定性,可以在碳水化合物存在下干燥这些蛋白质。我们证明了热梯度中红外光谱和远红外光谱(分别为FTIR和THz-TDS)可以提供有关固态蛋白质碳水化合物制剂有关迁移率和分子间相互作用的有用信息。在三种具有不同大小和蛋白质稳定能力的碳水化合物的存在下,将模型蛋白质(BSA)冻干。在含有蛋白质和/或较大碳水化合物(寡糖或多糖)的制剂中,随着温度的升高,迁移率逐渐增加,而对于较小的分子则缺乏明显的快速迁移性。此外,这两种技术都能够确定样品的玻璃化转变温度(Tg)。 FTIR提供了更多信息,因为它可以独立监控Tg处蛋白质和碳水化合物带的变化。最后,THz-TDS确认蛋白质与碳水化合物相互作用减少的先前发现随着碳水化合物分子量的增加,降低蛋白质的稳定性。

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