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A multi-faceted approach to analyzing glucose heat-degradants and evaluating impact to aCHOcell culture process

机译:一种分析葡萄糖热降解剂和评价achocell培养方法的多刻度方法

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摘要

Glucose solutions are commonly heated before use in medical and biotech applications to maintain cleanliness, however the resulting degradants can be toxic. This study examines two approaches to evaluating the heat degradants resulting from holding a 40% glucose solution at 55 degrees C for 5 weeks: first, chemical changes to the solution were identified and quantified via analytical testing, and second the toxicity of the heat-degraded 40% glucose solution was evaluated empirically by using it as a feed stock for a fed-batch CHO-cell-based protein therapeutic manufacturing process. Colorimetric analysis quantified a color change during heating, and liquid chromatography assays measured an increase in the concentrations of two unknown degradants along with the commonly identified glucose impurity 5-hydroxymethylfurfural (5-HMF). Solution pH decreased over time, corresponding with an increase in fumaric acid concentration as measured via GC-MS. Despite this, cell culture toxicity was not observed, and protein productivity and product quality were maintained.
机译:在医疗和生物技术应用中使用之前通常加热葡萄糖溶液以保持清洁,但是所得的降解剂可以是有毒的。该研究检查了评估由55摄氏度保持40%葡萄糖溶液的热降解剂的方法5周:首先,通过分析试验鉴定和定量溶液的化学变化,并通过分析测试来定量热降解的毒性通过将其作为饲料原料凭经验评价40%的葡萄糖溶液,用于喂养基于批量生的蛋白质治疗制造方法。比色分析量化了加热过程中的颜色变化,并且液相色谱测定测定了两个未知降低剂浓度的增加以及共同鉴定的葡萄糖杂质5-羟甲基糠醛(5-HMF)。溶液pH随时间随时间降低,与通过GC-MS测量的富马酸浓度的增加相对应。尽管如此,未观察到细胞培养毒性,并且保持蛋白质生产力和产品质量。

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