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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Use of mobile phase additives for the elution of bispecific and monoclonal antibodies from phenyl based hydrophobic interaction chromatography resins
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Use of mobile phase additives for the elution of bispecific and monoclonal antibodies from phenyl based hydrophobic interaction chromatography resins

机译:使用流动相添加剂从基于苯基的疏水相互作用色谱树脂洗脱双特异性和单克隆抗体的洗脱

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Hydrophobic interaction chromatography (HIC) is routinely used in the purification of biopharmaceuticals such as antibodies. However, hydrophobic proteins can be difficult to elute resulting in low recovery of product thereby complicating early phase process development and potentially excluding the use of HIC resins for their manufacture. Mobile phase additives such as hexylene glycol and arginine facilitate protein elution from resins including HIC; therefore, these additives were evaluated toward the recovery and purification of bispecific and monoclonal antibodies from Phenyl Sepharose HP and Capto Phenyl ImpRes resins. The influences of gradient versus step elution as well as superficial linear velocity on product quality were evaluated. Improved protein recovery and reduction of both soluble product aggregate and host cell protein were observed for the tested antibodies with both hexylene glycol and arginine. Furthermore, the impact of salt removal from the HIC load on protein-resin binding was examined providing opportunities to minimize processing time. This method was successfully scaled using a Phenyl Sepharose HP (5 cm i.d. x 20.0 cm) and Capto Phenyl ImpRes (3.2 cm i.d. x 21.4 cm) column demonstrating potential for manufacturing purposes.
机译:疏水相互作用色谱(HIC)常规用于纯化生物制药等抗体。然而,疏水性蛋白质可能难以洗脱,导致产物的低收回恢复,从而使早期期过程开发复杂,并且可能不包括使用HIC树脂的制造。移动相添加剂如己二醇和精氨酸,促进来自包括HIC的树脂的蛋白质洗脱;因此,朝向来自苯基琼脂糖HP的双特异性和单克隆抗体的复制和纯化这些添加剂,从苯基琼脂糖HP和CAPTO苯基的树脂进行了评估。评估了梯度与阶梯洗脱以及浅线速度对产品质量的影响。对于具有己二醇和精氨酸的测试抗体,观察到改善蛋白质回收和可溶性产物骨料和宿主细胞蛋白的降低。此外,检查了从HIC载荷对蛋白质树脂结合进行的盐的影响提供了最小化处理时间的机会。使用苯基琼脂糖HP(5cm I.D.×20.0cm)和Capto苯基(3.2cm I.D.×21.4cm)列成功缩放该方法,证明了制造目的的潜力。

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