Pfeifer Luisa-Marie, Singh Jasjot, Zimmer Aline, Krenkel Marc, Fischer Frank, Sensbach Janike, Pipp Frederic, Werkmann Daniela, Hewitt Philip
Early Investigative Toxicology, Merck Healthcare KGaA, 64293 Darmstadt, Germany.
Biomolecule Analytics & Proteomics, Site Management Analytical Lab Services, Merck KGaA, 64293 Darmstadt, Germany.
J Proteome Res. 2025 Aug 1;24(8):3961-3978. doi: 10.1021/acs.jproteome.5c00100. Epub 2025 Jul 15.
Fetal bovine serum (FBS) is commonly used in cell culture models despite being considered critical from both an ethical and scientific standpoint. Since it has been used for many years with a variety of different cells and cell types, research has become dependent on its use, and scientists hesitate to change their working model without solid data demonstrating the usability of serum-free cultivated cells in their desired applications. To shed light on the highly complex issue of dietary demands of cells in culture and the impact of media supplements on cellular behavior, we performed a comparative proteomic characterization between HepG2 cells cultivated in serum-free or FBS-containing conditions with a focus set on drug metabolism and oxidative stress response, the main application field of the HepG2 cell line. We observed the predicted upregulation of multiple pathways associated with drug metabolism and oxidative stress protection, as well as a strong overexpression of multiple antioxidative enzymes such as glutathione peroxidase and glutathione S-transferase at the protein expression level. We confirmed that increased enzyme expression correlates with higher enzyme activity in vitro and linked increased glutathione peroxidase activity to selenium supranutrition under serum-free conditions.
胎牛血清(FBS)尽管从伦理和科学角度来看都存在争议,但在细胞培养模型中仍被广泛使用。由于它已被用于多种不同的细胞和细胞类型多年,研究对其使用已产生依赖,并且在没有确凿数据证明无血清培养的细胞在其预期应用中的可用性之前,科学家们不愿改变他们的工作模式。为了阐明细胞培养中饮食需求这一高度复杂的问题以及培养基补充剂对细胞行为的影响,我们对在无血清或含FBS条件下培养的HepG2细胞进行了比较蛋白质组学表征,重点关注药物代谢和氧化应激反应,这是HepG2细胞系的主要应用领域。我们观察到与药物代谢和氧化应激保护相关的多个途径出现了预期的上调,以及在蛋白质表达水平上多种抗氧化酶如谷胱甘肽过氧化物酶和谷胱甘肽S -转移酶的强烈过表达。我们证实,酶表达的增加与体外更高的酶活性相关,并将无血清条件下谷胱甘肽过氧化物酶活性的增加与硒超营养联系起来。