Department of Internal Medicine II, Division of Cardiology, Medical University of Vienna, 1090 Vienna, Austria.
Ludwig Boltzmann Institute for Cardiovascular Research, Medical University of Vienna, 1090 Vienna, Austria.
Int J Mol Sci. 2022 Feb 7;23(3):1881. doi: 10.3390/ijms23031881.
Quantitative and functional analysis of mononuclear leukocyte populations is an invaluable tool to understand the role of the immune system in the pathogenesis of a disease. Cryopreservation of mononuclear cells (MNCs) is routinely used to guarantee similar experimental conditions. Immune cells react differently to cryopreservation, and populations and functions of immune cells change during the process of freeze-thawing. To allow for a setup that preserves cell number and function optimally, we tested four different cryopreservation media. MNCs from 15 human individuals were analyzed. Before freezing and after thawing, the distribution of leukocytes was quantified by flow cytometry. Cultured cells were stimulated using lipopolysaccharide, and their immune response was quantified by flow cytometry, quantitative polymerase chain reaction (qPCR), and enzyme-linked immunosorbent assay (ELISA). Ultimately, the performance of the cryopreservation media was ranked. Cell recovery and viability were different between the media. Cryopreservation led to changes in the relative number of monocytes, T cells, B cells, and their subsets. The inflammatory response of MNCs was altered by cryopreservation, enhancing the basal production of inflammatory cytokines. Different cryopreservation media induce biases, which needs to be considered when designing a study relying on cryopreservation. Here, we provide an overview of four different cryopreservation media for choosing the optimal medium for a specific task.
单核白细胞群体的定量和功能分析是理解免疫系统在疾病发病机制中作用的宝贵工具。单核细胞(MNC)的冷冻保存通常用于保证相似的实验条件。免疫细胞对冷冻保存的反应不同,并且在冷冻-解冻过程中免疫细胞的群体和功能会发生变化。为了实现最佳地保存细胞数量和功能的方案,我们测试了四种不同的冷冻保存培养基。分析了来自 15 个人类个体的 MNC。在冷冻前和解冻后,通过流式细胞术定量分析白细胞的分布。使用脂多糖刺激培养细胞,并通过流式细胞术、定量聚合酶链反应(qPCR)和酶联免疫吸附试验(ELISA)定量其免疫反应。最终,对冷冻保存培养基的性能进行了排名。不同的培养基之间细胞回收率和活力不同。冷冻保存导致单核细胞、T 细胞、B 细胞及其亚群的相对数量发生变化。MNC 的炎症反应被冷冻保存改变,增强了炎症细胞因子的基础产生。不同的冷冻保存培养基会引起偏差,在设计依赖于冷冻保存的研究时需要考虑这些偏差。在这里,我们提供了四种不同的冷冻保存培养基的概述,以选择针对特定任务的最佳培养基。