Kumar Vijesh, Rathore Anurag S
Department of Chemical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
Department of Chemical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
J Chromatogr A. 2014 Nov 14;1368:155-62. doi: 10.1016/j.chroma.2014.09.077. Epub 2014 Oct 6.
Aggregates of monoclonal antibody (mAb) therapeutics, due to their perceived impact on immunogenicity, are recognized as a critical quality attribute by the regulatory authorities as well as the industry. Hence, removal of aggregates is a key objective of bioprocessing. At present, this is achieved by a combination of two or more orthogonal chromatographic steps with possible modalities of ion exchange, hydrophobic interaction and mixed mode. A two-stage chromatographic purification process consisting of ion-exchange and hydrophobic interaction modes is proposed in this paper for effective and efficient control of aggregates for a mAb therapeutic. The proposed scheme does not require any intermediate processing of the process stream. Further, baseline separation is achieved for monomer and aggregates resulting in robust performance. This was possible because the proposed operational scheme allowed for an addition of selectivities of the two chromatography modes vs. the traditional two column scheme where part of the separation of aggregates achieved by the first column is lost upon pooling. The proposed process scheme yielded improved separation of aggregates (0% vs. 1-2%) at >95% recovery and reduced overall process time (6h vs. 14 h) for a typical application. Further, clearance of host cell proteins was also shown to have improved with the suggested process scheme. Successful implementation of the proposed scheme has been demonstrated for two different monoclonal antibody therapeutic products.
单克隆抗体(mAb)治疗剂的聚集体,因其对免疫原性的潜在影响,被监管机构和行业视为关键质量属性。因此,去除聚集体是生物加工的关键目标。目前,这是通过两个或更多正交色谱步骤的组合来实现的,这些步骤可能采用离子交换、疏水相互作用和混合模式等方式。本文提出了一种由离子交换和疏水相互作用模式组成的两步色谱纯化工艺,用于有效且高效地控制mAb治疗剂的聚集体。所提出的方案不需要对工艺流进行任何中间处理。此外,实现了单体和聚集体的基线分离,从而获得稳健的性能。这是可能的,因为所提出的操作方案允许增加两种色谱模式的选择性,而传统的双柱方案在合并时会损失第一根柱子实现的部分聚集体分离。对于典型应用,所提出的工艺方案在回收率>95%时,聚集体的分离得到了改善(0%对1 - 2%),并缩短了整体工艺时间(6小时对14小时)。此外,所建议的工艺方案还显示出宿主细胞蛋白的清除率有所提高。已证明所提出的方案成功应用于两种不同的单克隆抗体治疗产品。