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Precipitation of complex antibody solutions: influence of contaminant composition and cell culture medium on the precipitation behavior

机译:复合抗体溶液的沉淀:污染物组合物和细胞培养基对沉淀行为的影响

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摘要

Preparative protein precipitation is known as a cost-efficient and easy-to-use alternative to chromatographic purification steps. This said, at the moment, there is no process for monoclonal antibodies (mAb) on the market, although especially polyethylene glycol-induced precipitation has shown great potential. One reason might be the highly complex behavior of each component of a crude feedstock during the precipitation process. For different investigated mAbs, significant variations in the host cell protein (HCP) reduction are observed. In contrast to the precipitation behavior of single components, the interactions and interplay in a complex feedstock are not fully understood yet. This work discusses the influence of contaminants on the precipitation behavior of two different mAbs, an IgG1, and an IgG2. By spiking the mAbs with mock solution, a complex feedstock could successfully be mimicked. Spiking contaminants influenced the yield and purity of the mAbs after the precipitation step, compared to the precipitation behavior of the single components. The mixture showed a decrease in the contaminant and mAb solubility. By re-buffering the mock solution prior to spiking, special salts, small molecules like amino acids, vitamins, or sugars could be depleted while larger ones like HCP or DNA were still present. Therefore, it was possible to distinguish the influence of small molecules and larger ones. Hence, mAb-macromolecular interaction could be identified as a possible reason for the observed higher precipitation propensity, while small molecules of the cell culture medium were identified as solubilisation factors during the precipitation process.
机译:制备蛋白质沉淀被称为色谱纯化步骤的成本有效且易于使用的替代方案。如今,目前,在市场上没有单克隆抗体(MAB)的方法,尽管尤其是聚乙二醇诱导的沉淀表现出很大的潜力。一种原因可能是沉淀过程中粗原料的每个组分的高度复杂的行为。对于不同的研究MAB,观察到宿主细胞蛋白(HCP)的显着变化。与单个组分的沉淀行为相反,尚未完全理解复杂原料中的相互作用和相互作用。这项工作讨论了污染物对两种不同MAb,IgG1和IgG2的沉淀行为的影响。通过用模拟溶液掺入mAb,可以成功地模仿复杂的原料。与单一组分的沉淀行为相比,尖峰污染物影响了沉淀步骤后MAb的产量和纯度。该混合物显示污染物和MAB溶解度的降低。通过在尖峰之前重新缓冲模拟溶液,可以耗尽特殊的盐,氨基酸,维生素或糖等小分子,而仍然存在较大的HCP或DNA。因此,可以区分小分子和更大的影响。因此,可以将MAB - 大分子相互作用鉴定为观察到更高的沉淀局部的可能原因,而在沉淀过程中,细胞培养基的小分子被鉴定为溶解因子。

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