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Process-Relevant Concentrations of the Leachable bDtBPP Impact Negatively on CHO Cell Production Characteristics

机译:与工艺相关的可浸出bDtBPP浓度对CHO细胞生产特性产生负面影响

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The biopharmaceutical industry has invested considerably in the implementation of single-use disposable bioreactors in place of or in addition to their stainless steel-counterparts. This new wave of construction materials for disposable bioprocess containers encompass a plethora of uncharacterized secondary compounds that, when in contact with the culture media, can leach, contaminating the bioprocess. One such cytotoxic leachable already receiving attention is bis(2,4-di-tert-butylphenyl)-phosphate (bDtBPP), a breakdown product of the secondary antioxidant Irgafos 168 in polyethylene-film based bags. This compound has been demonstrated to inhibit cell growth at concentrations ranging from 0.12 to 0.73 mg/L across an array of cell lines. Here we demonstrate that a further two CHO cell lines exhibit sensitivity to bDtBPP exposure at concentrations lower than that previously reported (0.035-0.1 mg/L). Furthermore, these inhibitory concentrations reflect bDtBPP levels found to leach early into the bioprocess, exposing reactor inoculums to serious risk. Quantitative label-free LC-MS/MS revealed that irrespective of cell line or concentration of bDtBPP, 8 proteins were found to be commonly differentially expressed in response to exposure to the compound highlighting biological processes related to cellular stress. Although the glycoprofile of the recombinant antibody remains primarily unchanged, we demonstrate that this compound when spiked at meaningful concentrations 72 h into culture considerably reduces the maximum cell density achieved. Studies like this reinforce the requirement for the complete characterization of all potential leachable compounds from disposable materials to assess their risk not only to the patient but also to the production pipeline itself. (C) 2016 American Institute of Chemical Engineers
机译:生物制药行业已经投入大量资金来实施一次性使用的生物反应器,以代替或代替不锈钢对应物。这种用于一次性生物过程容器的新型建筑材料包括大量未表征的次级化合物,当与培养基接触时,它们会浸出,污染生物过程。一种已经引起人们注意的细胞毒性浸出剂是双(2,4-二叔丁基苯基)磷酸酯(bDtBPP),它是基于聚乙烯薄膜的袋子中次要抗氧化剂Irgafos 168的分解产物。已证明该化合物在一系列细胞系中以0.12至0.73 mg / L的浓度抑制细胞生长。在这里,我们证明了另外两种CHO细胞系对bDtBPP暴露的敏感性低于以前报道的浓度(0.035-0.1 mg / L)。此外,这些抑制浓度反映了bDtBPP的水平,发现其早浸入生物过程中,使反应堆接种物面临严重风险。无定量标记的LC-MS / MS表明,无论细胞系或bDtBPP的浓度如何,发现有8种蛋白质在暴露于该化合物后通常差异表达,该化合物突出了与细胞应激有关的生物学过程。尽管重组抗体的糖谱基本保持不变,但我们证明了该化合物以有意义的浓度掺入培养72小时后,可显着降低所达到的最大细胞密度。此类研究加强了对从一次性材料中所有潜在可浸出化合物进行完整表征的要求,以评估其不仅对患者而且对生产管道本身的风险。 (C)2016美国化学工程师学会

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