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In-column ATR-FTIR spectroscopy to monitor affinity chromatography purification of monoclonal antibodies

机译:柱内aTR-FTIR光谱法监测单克隆抗体的亲和层析纯化

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摘要

In recent years many monoclonal antibodies (mAb) have entered the biotherapeutics market, offering new treatments for chronic and life-threatening diseases. Protein A resin captures monoclonal antibody (mAb) effectively, but the binding capacity decays over repeated purification cycles. On an industrial scale, replacing fouled Protein A affinity chromatography resin accounts for a large proportion of the raw material cost. Cleaning-in-place (CIP) procedures were developed to extend Protein A resin lifespan, but chromatograms cannot reliably quantify any remaining contaminants over repeated cycles. To study resin fouling in situ, we coupled affinity chromatography and Fourier transform infrared (FTIR) spectroscopy for the first time, by embedding an attenuated total reflection (ATR) sensor inside a micro-scale column while measuring the UV 280 nm and conductivity. Our approach quantified the in-column protein concentration in the resin bed and determined protein conformation. Our results show that Protein A ligand leached during CIP. We also found that host cell proteins bound to the Protein A resin even more strongly than mAbs and that typical CIP conditions do not remove all fouling contaminants. The insights derived from in-column ATR-FTIR spectroscopic monitoring could contribute to mAb purification quality assurance as well as guide the development of more effective CIP conditions to optimise resin lifespan.
机译:近年来,许多单克隆抗体(mAb)进入了生物治疗市场,为慢性和危及生命的疾病提供了新的治疗方法。蛋白A树脂可有效捕获单克隆抗体(mAb),但结合能力会随着重复的纯化循环而下降。在工业规模上,替换污损的蛋白A亲和色谱树脂占原材料成本的很大一部分。开发了原位清洗(CIP)程序以延长蛋白A树脂的寿命,但是色谱图无法可靠地定量重复周期内的任何残留污染物。为了原位研究树脂结垢,我们首次将亲和色谱法和傅立叶变换红外(FTIR)光谱法结合在一起,方法是将衰减全反射(ATR)传感器嵌入微柱中,同时测量280nm的紫外线和电导率。我们的方法量化了树脂床中柱内蛋白质的浓度并确定了蛋白质构象。我们的结果表明,蛋白A配体在CIP过程中浸出。我们还发现,宿主细胞蛋白与mAb的结合力甚至比mAb还要强,典型的CIP条件不能去除所有污垢污染物。柱内ATR-FTIR光谱监测得出的见解可有助于mAb纯化质量的保证,并指导开发更有效的CIP条件以优化树脂的使用寿命。

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    Kazarian SG; Byrne B;

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  • 年度 2016
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