Adapting the protocol for studying the functional capacity of T lymphocytes thawed from cryopreservation

E. V. Saidakova, L. Korolevskaya, V. N. Ponomareva, V. V. Vlasova
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Abstract

Background. Immunological studies are impossible without long-term storage of cryopreserved biomaterial. There are no standard procedures for working with cryopreserved mononuclear leukocytes.The aim of the study. To optimize the protocol for culturing T lymphocytes thawed after cryopreservation by assessing their viability and proliferative capacity.Methods. Mononuclear leukocytes were isolated from the peripheral blood of relatively healthy volunteers (n = 18). Cells were subjected to controlled freezing down to –80 °C and were transferred to liquid nitrogen. First step: after thawing, the cells were stained with CFSE (carboxyfluorescein succinimidyl ester), were divided into two parts and cultured in the presence/absence of interleukin 2 (IL-2). Cell proliferation was stimulated with phytohemagglutinin (type P). Cells were incubated for 7 days. Sample analysis was performed using flow cytometry. Second stage: thawed cells were divided into three parts. Two parts were resuspended in a full growth medium with IL-2 and were placed in a thermostat (+37 °C) to “rest” for one hour or overnight. After “resting”, the cells were stained with CFSE. One third of the thawed leukocytes were stained with CFSE immediately after thawing. Cells were stimulated, cultured and analyzed the same way at both stages of the study.Results. It has been established that adding IL-2 to the culture medium contributes to a better cell survival. In the presence of IL-2, stimulated CD4+ and CD8+ T lymphocytes produced more daughter cell generations. At the end of the 7-day incubation “rested” samples had reduced leukocyte counts compared to the samples that were cultured immediately after thawing. The number of daughter cell generations formed by stimulated CD4+ and CD8+ T cells decreased when the “rest” stage was included into the study protocol.Conclusion. Adding IL-2 into culture medium can increase the viability and mitotic capacity of thawed T cells, making their state more similar to that of freshly isolated lymphocytes. Cell “rest” after thawing negatively affects the viability and proliferative activity of T lymphocytes during their weekly incubation.
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调整冷冻解冻 T 淋巴细胞功能研究方案
背景。如果不长期储存低温保存的生物材料,就无法进行免疫学研究。目前还没有处理冷冻保存的单核白细胞的标准程序。通过评估冷冻保存后解冻的 T 淋巴细胞的活力和增殖能力,优化其培养方案。从相对健康的志愿者(n = 18)的外周血中分离出单核白细胞。将细胞冷冻至零下 80 摄氏度,然后转移到液氮中。第一步:解冻后,用 CFSE(羧基荧光素琥珀酰亚胺酯)对细胞进行染色,将细胞分成两部分,在白细胞介素 2(IL-2)存在/不存在的情况下进行培养。用植物血凝素(P 型)刺激细胞增殖。细胞培养 7 天。使用流式细胞仪进行样本分析。第二阶段:将解冻的细胞分成三份。两部分细胞重悬于含有 IL-2 的全生长培养基中,并置于恒温器(+37 °C)中 "静置 "一小时或过夜。静置 "后,用 CFSE 对细胞进行染色。解冻后的三分之一白细胞立即用 CFSE 染色。在研究的两个阶段,都以同样的方式对细胞进行刺激、培养和分析。在培养基中加入 IL-2 有助于提高细胞存活率。在有 IL-2 的情况下,受刺激的 CD4+ 和 CD8+ T 淋巴细胞会产生更多的子代细胞。在 7 天培养结束时,"休息 "样本的白细胞数量比解冻后立即培养的样本要少。在研究方案中加入 "静止 "阶段后,受刺激的 CD4+ 和 CD8+ T 细胞形成的子代细胞数量减少。在培养基中加入 IL-2 可提高解冻 T 细胞的活力和有丝分裂能力,使其状态更接近于新鲜分离的淋巴细胞。解冻后的细胞 "静止 "会对 T 淋巴细胞每周培养期间的活力和增殖活性产生负面影响。
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