Early Stage Cell Culture, Genentech, Inc., 1 DNA Way, South San Francisco, CA 94080, USA.
Biotechnol Prog. 2010 Sep-Oct;26(5):1438-45. doi: 10.1002/btpr.465.
THIOMABs are recombinant antibodies with reactive cysteine residues used for forming THIOMAB-drug conjugates (TDCs). We recently reported a new impurity associated with THIOMABs: one of the engineered cysteines forms a disulfide bond with an extra light chain (LC) to generate a triple light chain antibody (3LC). In our previous investigations, increased LC expression increased 3LC levels, whereas increased glutathione (GSH) production decreased 3LC levels. In this work, on three stably transfected CHO cell lines, we investigated the effects of temperature, pH, dissolved oxygen (DO), and hydrolysate on 3LC formation during THIOMAB fed-batch cell culture production. Although pH between 6.8 and 7.0 had no significant impact on 3LC formation, temperature at 35°C instead of 33 or 31°C generated the lowest 3LC values for two cell lines. The decreased 3LC level correlated with increased GSH production. We implemented a 35°C temperature process for large-scale (2,000 L) production of a THIOMAB. This process reduced 3LC levels by ∼50% compared with a 33°C temperature process. By contrast, DO and hydrolysate had modest effect on 3LC levels for the model cell line studied. Overall, we did not find significant changes in LC expression under the conditions tested, whereas changes in GSH production were more evident. By investigating the impact of bioreactor process and medium conditions on 3LC levels, we identified strategies that reduced 3LC levels.
THIOMAB 是一种带有反应性半胱氨酸残基的重组抗体,用于形成 THIOMAB-药物偶联物 (TDC)。我们最近报道了一种与 THIOMAB 相关的新杂质:其中一个工程化的半胱氨酸与额外的轻链 (LC) 形成二硫键,生成三轻链抗体 (3LC)。在我们之前的研究中,LC 表达增加会增加 3LC 水平,而增加谷胱甘肽 (GSH) 的产生会降低 3LC 水平。在这项工作中,我们在三个稳定转染的 CHO 细胞系上研究了温度、pH 值、溶解氧 (DO) 和水解物对 THIOMAB 补料分批细胞培养生产过程中 3LC 形成的影响。尽管 pH 值在 6.8 到 7.0 之间对 3LC 形成没有显著影响,但与 33°C 或 31°C 相比,35°C 的温度会使两个细胞系的 3LC 值最低。3LC 水平的降低与 GSH 产量的增加有关。我们为 THIOMAB 的大规模 (2000 L) 生产实施了 35°C 的温度工艺。与 33°C 的温度工艺相比,该工艺将 3LC 水平降低了约 50%。相比之下,在研究的模型细胞系中,DO 和水解物对 3LC 水平的影响较小。总体而言,在测试条件下,我们没有发现 LC 表达的显著变化,而 GSH 产量的变化更为明显。通过研究生物反应器工艺和培养基条件对 3LC 水平的影响,我们确定了降低 3LC 水平的策略。