Koh Eun-Jeong, Heo Seong-Yeong, Park Areumi, Lee Yeon-Ji, Choi Woon-Yong, Heo Soo-Jin
Jeju Bio Research Center, Korea Institute of Ocean Science and Technology (KIOST), Jeju 63349, Republic of Korea.
Department of Marine Technology & Convergence Engineering (Marine Biotechnology), University of Science and Technology, Daejeon 34113, Republic of Korea.
Foods. 2024 Sep 23;13(18):3012. doi: 10.3390/foods13183012.
Experiments are increasingly performed in vitro; therefore, cell culture technology is essential for scientific progress. Fetal bovine serum (FBS) is a key cell culture supplement providing growth factors, amino acids, and hormones. However, FBS is not readily available on the market, has contamination risks, and has ethical concerns. This study aimed to investigate extracts (HE) as a potential substitute for FBS. Therefore, we assessed the effects of HE on cell maintenance, growth, and cycle progression in human lung fibroblasts (MRC-5). Cell progression and monosaccharide, fatty acid, and free amino acid compositions were analyzed using cell cycle analysis, bio-liquid chromatography, gas chromatography, and high-performance liquid chromatography, respectively. The results of nutritional profiles showed that the extracts contained essential amino acids required for synthesizing non-essential amino acids and other metabolic intermediates. Furthermore, most of the components present in HE were consistent with those found in FBS. HE enhanced cell viability and regulated cell cycle phases. Additionally, the interaction between growth factor cocktails and HE significantly improved cell viability, promoted cell cycle progression, and activated key cell cycle regulators, such as cyclin A and cyclin-dependent kinases 1 (CDK1). Our findings suggest that HE have considerable potential to substitute FBS in MRC-5 cell cultures and have functional and ethical advantages.
实验越来越多地在体外进行;因此,细胞培养技术对科学进步至关重要。胎牛血清(FBS)是一种关键的细胞培养补充剂,可提供生长因子、氨基酸和激素。然而,FBS在市场上不易获得,存在污染风险,并且存在伦理问题。本研究旨在研究水解提取物(HE)作为FBS的潜在替代品。因此,我们评估了HE对人肺成纤维细胞(MRC-5)的细胞维持、生长和周期进程的影响。分别使用细胞周期分析、生物液相色谱、气相色谱和高效液相色谱分析细胞进程以及单糖、脂肪酸和游离氨基酸组成。营养成分分析结果表明,提取物含有合成非必需氨基酸和其他代谢中间体所需的必需氨基酸。此外,HE中存在的大多数成分与FBS中发现的成分一致。HE提高了细胞活力并调节了细胞周期阶段。此外,生长因子混合物与HE之间的相互作用显著提高了细胞活力,促进了细胞周期进程,并激活了关键的细胞周期调节因子,如细胞周期蛋白A和细胞周期蛋白依赖性激酶1(CDK1)。我们的研究结果表明,HE在MRC-5细胞培养中具有替代FBS的巨大潜力,并且具有功能和伦理优势。