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使用无胎牛血清培养基最大限度地提高 A549 细胞培养的相关性和可重复性。

Maximizing the relevance and reproducibility of A549 cell culture using FBS-free media.

机构信息

Luxembourg Institute of Science and Technology (LIST), Environmental Research and Innovation (ERIN) Department, 41 rue du Brill, L-4422 Belvaux, Luxembourg.

PETA Science Consortium International e.V., Friolzheimer Str. 3, 70499 Stuttgart, Germany.

出版信息

Toxicol In Vitro. 2022 Sep;83:105423. doi: 10.1016/j.tiv.2022.105423. Epub 2022 Jun 24.

Abstract

Scientists are using in vitro methods to answer important research questions and implementing strategies to maximize the reliability and human relevance of these methods. One strategy is to replace the use of fetal bovine serum (FBS)-an undefined and variable mixture of biomolecules-in cell culture media with chemically defined or xeno-free medium. In this study, A549 cells, a human lung alveolar-like cell line commonly used in respiratory research, were transitioned from a culture medium containing FBS to media without FBS. A successful transition was determined based on analysis of cell morphology and functionality. Following transition to commercially available CnT-Prime Airway (CELLnTEC) or X-VIVO™ 10 (Lonza) medium, the cells were characterized by microscopic evaluation and calculation of doubling time. Their genotype, morphology, and functionality were assessed by monitoring the expression of gene markers for lung cell types, surfactant production, cytokine release, the presence of multilamellar bodies, and cell viability following sodium dodecyl sulphate exposure. Our results showed that A549 cells successfully transitioned to FBS-free media under submerged and air-liquid-interface conditions. Cells grown in X-VIVO™ 10 medium mimicked cellular characteristics of FBS-supplemented media while those grown in CnT-Prime Airway medium demonstrated characteristics possibly more reflective of normal human alveolar epithelial cells.

摘要

科学家正在使用体外方法来回答重要的研究问题,并实施策略来最大程度地提高这些方法的可靠性和与人类的相关性。一种策略是用化学成分明确或无动物源的培养基代替细胞培养基中使用的胎牛血清(FBS)——一种成分不明确且多变的生物分子混合物。在这项研究中,A549 细胞(一种常用于呼吸研究的人肺泡样细胞系)从含有 FBS 的培养基转换为不含 FBS 的培养基。成功的转换是基于对细胞形态和功能的分析来确定的。在转换为市售的 CnT-Prime Airway(CELLnTEC)或 X-VIVO™ 10(Lonza)培养基后,通过显微镜评估和倍增时间计算来对细胞进行特征描述。通过监测肺细胞类型、表面活性剂产生、细胞因子释放、多层体的存在以及十二烷基硫酸钠暴露后的细胞活力的基因标记的表达来评估它们的基因型、形态和功能。我们的结果表明,A549 细胞在浸没和气液界面条件下成功地转换为无 FBS 培养基。在 X-VIVO™ 10 培养基中生长的细胞模拟了补充 FBS 的培养基中的细胞特征,而在 CnT-Prime Airway 培养基中生长的细胞表现出的特征可能更能反映正常的人肺泡上皮细胞。

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