Talebi Mehdi, Nozad Charoudeh Hojjatollah, Movassaghpour Akbari Ali Akbar, Baradaran Behzad, Kazemi Tohid
Department of Applied Cell Sciences, School of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Adv Pharm Bull. 2021 May;11(3):537-542. doi: 10.34172/apb.2021.062. Epub 2020 Aug 5.
Effective and selective T-cell activation and proliferation during the T-cell expansion phase of a cellular adoptive immunotherapy method, challenging because recent studies revealed the importance of each subtype of T-cells in different immunologic strategies against tumors, like CAR-T cell therapies. Artificial antigen presenting cells (aAPCs) regarded as a natural way to manipulate T-cell subtypes activation and specific proliferation. In the current study, we utilized K562 cells based aAPC method expressing the ICOSL molecule, to evaluate T-cell subtypes differentiation rate and functional status. CD3+T-cells isolated and, co-cultured with ICOSL expressing K562 cells. After 4, 6, and 10 days selective CD markers of T-cell subtypes and each subtype's activity-related genes levels evaluated by qPCR methods. During the culture period, CD4+ Th related phenotype reduced continuously, and in day 10 of culture CD4+ T-cell's population significantly reduced ( =0.029). In contrast, the CD8+ population ratio was ascending during the study period but was not statistically significant. FoxP3+CD25-, Treg population ratio was significantly increased during the time in comparison with the control group, as well as memory T-cell phenotypic marker, CD127+, expressing cells ratio. T-cell subpopulations activity-related genes expression levels evaluated too, and the Th1 related IL-2 and INF-γ reductions observed alongside regulatory T-cells gene (IL-10) and Cytotoxic T-cell's related gene (Geranzym-A) elevations. We concluded that the K562-ICOSL based aAPC system is working and effective in T-cell short to medium culture periods, and this approach preparing relatively selective milieu for CD8+ T-Cell differentiation and much less Treg differentiation.
在细胞过继性免疫治疗方法的T细胞扩增阶段实现有效的选择性T细胞活化和增殖颇具挑战性,因为最近的研究揭示了不同T细胞亚群在针对肿瘤的不同免疫策略(如CAR-T细胞疗法)中的重要性。人工抗原呈递细胞(aAPC)被视为一种操纵T细胞亚群活化和特异性增殖的天然方式。在本研究中,我们利用基于表达ICOSL分子的K562细胞的aAPC方法,来评估T细胞亚群的分化率和功能状态。分离出CD3 + T细胞,并与表达ICOSL的K562细胞共培养。在4天、6天和10天后,通过qPCR方法评估T细胞亚群的选择性CD标志物以及各亚群与活性相关的基因水平。在培养期间,CD4 + Th相关表型持续降低,在培养第10天时,CD4 + T细胞群体显著减少(P = 0.029)。相比之下,在研究期间CD8 +群体比例呈上升趋势,但无统计学意义。与对照组相比,FoxP3 + CD25 - Treg群体比例在这段时间内显著增加,以及记忆T细胞表型标志物CD127 +表达细胞比例也显著增加。还评估了T细胞亚群与活性相关的基因表达水平,观察到Th1相关的IL-2和INF-γ减少,同时调节性T细胞基因(IL-10)和细胞毒性T细胞相关基因(颗粒酶-A)升高。我们得出结论,基于K562-ICOSL的aAPC系统在T细胞短期至中期培养期间有效且起作用,并且这种方法为CD8 + T细胞分化准备了相对选择性的环境,而Treg分化则少得多。