Blinova V G, Gladilina Y A, Eliseeva D D, Lobaeva T A, Zhdanov D D
Institute of Biomedical Chemistry, Moscow, Russia.
Research Center of Neurology, Moscow, Russia.
Biomed Khim. 2022 Jan;68(1):55-67. doi: 10.18097/PBMC20226801055.
Regulatory T-cells CD4⁺CD25⁺FoxP3⁺CD127low (Tregs) play a key role in the maintenance of tolerance to auto antigens, inhibit function of effector T and B lymphocytes, and provide a balance between effector and regulatory arms of immunity. Patients with autoimmune diseases have decreased Treg numbers and impaired suppressive activity. Transformed ex vivo autologous Tregs could restore destroyed balance of the immune system. We developed a method for Treg precursor cell cultivation. Following the method, we were able to grown up 300-400 million of Tregs cells from 50 ml of peripheral blood during a week. Transformed ex vivo Tregs are 90-95% CD4⁺CD25⁺FoxP3⁺CD127low and have increased expression of transcription genes FoxP3 and Helios. Transformed ex vivo Tregs have increased demethylation of FoxP3 promoter and activated genes of proliferation markers Cycline B1, Ki67 and LGALS 1. Transformed ex vivo Tregs have increased suppressive activity and up to 80-90% these cells secrete cytokines TNFα и IFNγ. Our data suggest transformed ex vivo autologous Tregs have genetic, immunophenotypic and functional characteristics for regulatory T-cells and further can be used for adoptive immunotherapy autoimmune diseases and inhibition of transplantation immunity.
调节性T细胞CD4⁺CD25⁺FoxP3⁺CD127low(Tregs)在维持自身抗原耐受性、抑制效应T和B淋巴细胞功能以及在免疫效应和调节分支之间提供平衡方面发挥关键作用。自身免疫性疾病患者的Treg数量减少且抑制活性受损。体外转化的自体Tregs可恢复被破坏的免疫系统平衡。我们开发了一种Treg前体细胞培养方法。按照该方法,我们能够在一周内从50毫升外周血中培养出3亿至4亿个Tregs细胞。体外转化的Tregs有90%至95%为CD4⁺CD25⁺FoxP3⁺CD127low,且转录基因FoxP3和Helios的表达增加。体外转化的Tregs的FoxP3启动子去甲基化增加,增殖标志物Cycline B1、Ki67和LGALS 1的基因被激活。体外转化的Tregs的抑制活性增强,这些细胞中高达80%至90%分泌细胞因子TNFα和IFNγ。我们的数据表明,体外转化的自体Tregs具有调节性T细胞的遗传、免疫表型和功能特征,可进一步用于自身免疫性疾病的过继免疫治疗及抑制移植免疫。