Petiot Emma, El-Wajgali Amal, Esteban Geoffrey, Gény Cécile, Pinton Hervé, Marc Annie
Laboratoire Réactions et Génie des Procédés, UPR CNRS 3349, Nancy-Université, 2 avenue de la Forêt de Haye, 54505, Vandoeuvre-lès-Nancy Cedex, France,
Cytotechnology. 2012 Aug;64(4):429-41. doi: 10.1007/s10616-011-9421-2. Epub 2012 Feb 25.
This study proposes an easy to use in situ device, based on multi-frequency permittivity measurements, to monitor the growth and death of attached Vero cells cultivated on microporous microcarriers, without any cell sampling. Vero cell densities were on-line quantified up to 10(6) cell mL(-1). Some parameters which could potentially impact Vero cell morphological and physiological states were assessed through different culture operating conditions, such as media formulation or medium feed-harvest during cell growth phase. A new method of in situ cell death detection with dielectric spectroscopy was also successfully implemented. Thus, through permittivity frequency scanning, major rises of the apoptotic cell population in bioreactor cultures were detected by monitoring the characteristic frequency of the cell population, f(c), which is one of the culture dielectric parameters. Both cell density quantification and cell apoptosis detection are strategic information in cell-based production processes as they are involved in major events of the process, such as scale-up or choice of the viral infection conditions. This new application of dielectric spectroscopy to adherent cell culture processes makes it a very promising tool for risk-mitigation strategy in industrial processes. Therefore, our results contribute to the development of Process Analytical Technology in cell-based industrial processes.
本研究提出了一种基于多频介电常数测量的易于使用的原位装置,用于监测在微孔微载体上培养的贴壁Vero细胞的生长和死亡情况,无需进行任何细胞采样。Vero细胞密度可在线定量至10(6)个细胞/mL(-1)。通过不同的培养操作条件,如培养基配方或细胞生长阶段的培养基补料-收获,评估了一些可能影响Vero细胞形态和生理状态的参数。一种利用介电谱进行原位细胞死亡检测的新方法也成功实施。因此,通过介电常数频率扫描,通过监测细胞群体的特征频率f(c)(这是培养介电参数之一),检测到生物反应器培养物中凋亡细胞群体的主要增加。细胞密度定量和细胞凋亡检测都是基于细胞的生产过程中的关键信息,因为它们涉及到该过程的重大事件,如放大或病毒感染条件的选择。介电谱在贴壁细胞培养过程中的这种新应用使其成为工业过程中风险缓解策略的一个非常有前景的工具。因此,我们的结果有助于基于细胞的工业过程中过程分析技术的发展。