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靶向 CHO 细胞工程方法可以减少 HCP 相关的酶降解,提高单抗产品质量。

Targeted CHO cell engineering approaches can reduce HCP-related enzymatic degradation and improve mAb product quality.

机构信息

Cell Culture and Fermentation Sciences, BioPharmaceutical Development, BioPharmaceuticals R&D, Cambridge, AstraZeneca, UK.

Purification Process Sciences, BioPharmaceutical Development, BioPharmaceuticals R&D, Cambridge, AstraZeneca, UK.

出版信息

Biotechnol Bioeng. 2021 Oct;118(10):3821-3831. doi: 10.1002/bit.27857. Epub 2021 Jun 29.

Abstract

Host cell proteins (HCP) that co-purify with biologics produced in Chinese hamster ovary cells have been shown to impact product quality through proteolytic degradation of recombinant proteins, leading to potential product losses. Several problematic HCPs can remain in the final product even after extensive purification. Each recombinant cell line has a unique HCP profile that can be determined by numerous upstream and downstream factors, including clonal variation and the protein sequence of the expressed therapeutic molecule. Here, we worked with recombinant cell lines with high levels of copurifying HCPs, and showed that in those cell lines even modest downregulation (≤50%) of the difficult to remove HCP Cathepsin D, through stable short hairpin RNA interference or monoallelic deletion of the target gene using CRISPR-Cas9, is sufficient to greatly reduce levels of co-purifying HCP as measured by high throughput targeted LC-MS. This reduction led to improved product quality by reducing fragmentation of the drug product in forced degradation studies to negligible levels. We also show the potential of cell engineering to target other undesired HCPs and relieve the burden on downstream purification.

摘要

与中国仓鼠卵巢细胞中生产的生物制剂共纯化的宿主细胞蛋白(HCP)已被证明会通过重组蛋白的蛋白水解降解影响产品质量,导致潜在的产品损失。即使经过广泛的纯化,最终产品中仍可能残留几种有问题的 HCP。每个重组细胞系都有独特的 HCP 特征,这可以通过许多上游和下游因素来确定,包括克隆变异和表达的治疗分子的蛋白质序列。在这里,我们与共纯化 HCP 水平较高的重组细胞系合作,结果表明,在这些细胞系中,即使是对难以去除的 HCP 组织蛋白酶 D 的适度下调(≤50%),通过稳定短发夹 RNA 干扰或使用 CRISPR-Cas9 对靶基因进行单等位基因缺失,也足以大大降低高通量靶向 LC-MS 测量的共纯化 HCP 水平。这种减少通过将药物产品在强制降解研究中的碎片化减少到可忽略的水平,从而提高了产品质量。我们还展示了细胞工程靶向其他不理想的 HCP 的潜力,并减轻了下游纯化的负担。

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