Petiti Jessica, Revel Laura, Divieto Carla
Division of Advanced Materials Metrology and Life Sciences, Istituto Nazionale di Ricerca Metrologica (INRIM), 10135, Turin, Italy.
BMC Res Notes. 2025 May 22;18(1):228. doi: 10.1186/s13104-025-07298-w.
The results of this research contribute to the LifeSaver project, which focuses on reducing neonatal and infant mortality resulting from preterm births. The project aims to create an in vitro system simulating prenatal conditions to screen and analyze chemicals and pharmaceuticals, establishing scientifically justified regulations for their use during pregnancy. Because several papers have recently identified data inconsistencies in pre-clinical studies, a key part of the project involves optimizing cellular cytotoxicity assays to enhance the reliability of pharmacological and toxicity screening for drugs and environmental contaminants.
The resazurin-based viability assay was chosen as the primary method due to its widespread adoption and simplicity in assessing drug cytotoxicity. This work describes the optimization of the resazurin-based viability assay on the P-MSC/TERT308 cell line, a placenta-derived mesenchymal stem cell used within the LifeSaver project. By applying our previously described and validated Standard Operating Procedure, we fine-tuned experimental parameters, consistently obtaining reliable results with measurement uncertainty of less than 10%.
本研究结果有助于“救生员”项目,该项目专注于降低早产导致的新生儿和婴儿死亡率。该项目旨在创建一个模拟产前条件的体外系统,以筛选和分析化学物质和药物,为孕期使用这些物质制定科学合理的法规。由于最近几篇论文指出临床前研究中存在数据不一致的情况,该项目的一个关键部分涉及优化细胞毒性检测方法,以提高药物和环境污染物药理及毒性筛选的可靠性。
基于刃天青的活力检测因其在评估药物细胞毒性方面的广泛应用和简便性而被选为主要方法。这项工作描述了在“救生员”项目中使用的胎盘来源间充质干细胞P-MSC/TERT308细胞系上对基于刃天青的活力检测进行的优化。通过应用我们之前描述并验证的标准操作规程,我们对实验参数进行了微调,始终获得了可靠的结果,测量不确定度小于10%。