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Preventing Aggregation of Recombinant Interferon beta-1b in Solution by Additives: Approach to an Albumin-Free Formulation

机译:通过添加剂防止溶液中重组干扰素β-1b的聚集:无白蛋白制剂的方法

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Purpose: Aggregation suppressing additives have been used to stabilize proteins duringmanufacturing and storage. Interferonβ-1b is prone to aggregation because of being nonglycosylated.Aggregation behavior of albumin-free formulations of recombinant IFNβ-1bwas explored using additives such as n-dodecyl-β-D-maltoside, Tween 20, arginine,glycine, trehalose and sucrose at different pH.Methods: Fractional factorial design was applied to select major factors affectingaggregation in solutions. Box-Behnken technique was used to optimize the bestconcentration of additives and protein.Results: Quadratic model was the best fitted model for particle size, OD350 andOD280/OD260. The optimal conditions of 0.2% n-Dodecyl-β-D-maltoside, 70 mMarginine, 189 mM trehalose and protein concentration of 0.50 mg/ml at pH 4 were achieved.A potency value of 91% ± 5% was obtained for the optimized formulation.Conclusion: This study shows that the combination of n-Dodecyl-β-D-maltoside, arginineand trehalose would demonstrate a significant stabilizing and anti-aggregating effect on theliquid formulation of interferonβ-1b. It can not only reduce the manufacturing costs but willalso ease patient compliance.
机译:目的:抑制聚集的添加剂已用于在制造和存储过程中稳定蛋白质。干扰素β-1b由于未糖基化而易于聚集。使用正十二烷基-β-D-麦芽糖苷,吐温20,精氨酸,甘氨酸,海藻糖和蔗糖等添加剂探索了无重组白蛋白的重组IFNβ-1b的聚集行为。方法:采用分数阶乘设计,选择影响溶液聚集的主要因素。结果:二次模型是粒径,OD350和OD280 / OD260的最佳拟合模型。采用Box-Behnken技术对添加剂和蛋白质的最佳浓度进行了优化。在pH为4的条件下,获得了0.2%n-十二烷基-β-D-麦芽糖苷,70 mMarginine,189 mM海藻糖和0.50 mg / ml蛋白质浓度的最佳条件,优化后的效价值为91%±5%结论:本研究表明,正十二烷基-β-D-麦芽糖苷,精氨酸和海藻糖的组合对干扰素β-1b的液体制剂具有明显的稳定和抗聚集作用。它不仅可以降低制造成本,而且可以减轻患者的依从性。

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