Roesch Alexandra, Windisch Roland, Wichmann Christian, Wolkers Willem F, Kersten Gideon, Menzen Tim
Coriolis Pharma, Fraunhoferstr. 18 b, 82152, Martinsried, Germany; Leiden Academic Centre for Drug Research (LACDR), Leiden University, PO Box 9502, 2300, RA, Leiden, the Netherlands.
Division of Transfusion Medicine, Cell Therapeutics and Haemostaseology, University Hospital, LMU Munich, Munich, Germany.
Cryobiology. 2023 Dec;113:104587. doi: 10.1016/j.cryobiol.2023.104587. Epub 2023 Oct 1.
To develop cryopreservation methods for cell-based medicinal products it is important to understand osmotic responses of cells upon immersion into solutions with cryoprotective agents (CPAs) and during freezing. The aim of this study was to assess the osmotic response of T cells by using flow imaging microscopy (FIM) as a novel cell-sizing technique, and to corroborate the findings with electrical impedance measurements conducted on a Coulter counter. Jurkat cells were used as a potential model cell line for primary T cells. Cell volume responses were used to derive important cell parameters for cryopreservation such as the osmotically inactive cell volume V and the membrane permeability towards water and various CPAs. Unlike Coulter counter measurement, FIM, combined with Trypan blue staining can differentiate between viable and dead cells, which yields a more accurate estimation of V. Membrane permeabilities to water, dimethyl sulfoxide (MeSO) and glycerol were measured for Jurkat cells at different temperatures. The permeation of MeSO into the cells was faster in comparison to glycerol. CPA permeation decreased with decreasing temperature following Arrhenius behavior. Moreover, membrane permeability to water decreased in the presence of CPAs. V of Jurkat cells was found to be 49% of the isotonic volume and comparable to that of primary T cells. FIM proved to be a valuable tool to determine the membrane permeability parameters of mammalian cells to water and cryoprotective agents, which in turn can be used to rationally design CPA loading procedures for cryopreservation.
为开发基于细胞的医药产品的冷冻保存方法,了解细胞在浸入含有冷冻保护剂(CPA)的溶液中以及冷冻过程中的渗透反应非常重要。本研究的目的是使用流动成像显微镜(FIM)作为一种新型细胞大小测量技术来评估T细胞的渗透反应,并用在库尔特计数器上进行的电阻抗测量来证实这些发现。Jurkat细胞被用作原代T细胞的潜在模型细胞系。细胞体积反应被用于推导冷冻保存的重要细胞参数,如渗透惰性细胞体积V以及对水和各种CPA的膜通透性。与库尔特计数器测量不同,FIM结合台盼蓝染色可以区分活细胞和死细胞,从而对V进行更准确的估计。在不同温度下测量了Jurkat细胞对水、二甲基亚砜(MeSO)和甘油的膜通透性。与甘油相比,MeSO进入细胞的速度更快。CPA的渗透遵循阿伦尼乌斯行为,随温度降低而降低。此外,在CPA存在的情况下,对水的膜通透性降低。发现Jurkat细胞的V为等渗体积的49%,与原代T细胞相当。FIM被证明是一种有价值的工具,可用于确定哺乳动物细胞对水和冷冻保护剂的膜通透性参数,进而可用于合理设计冷冻保存的CPA加载程序。