Kapranov N M, Davydova Y O, Galtseva I V, Petinati N A, Drize N I, Kuzmina L A, Parovichnikova E N, Savchenko V G
National Research Center for Hematology, Ministry of Healthcare of the Russian Federation, Moscow, 125167, Russia.
Biochemistry (Mosc). 2017 Oct;82(10):1158-1168. doi: 10.1134/S000629791710008X.
Multipotent mesenchymal stromal cells (MSCs) are widely used for cell therapy, in particular for prophylaxis and treatment of graft-versus-host disease. Due to their immunomodulatory properties, MSCs affect the composition of lymphocyte subpopulations, which depends on the immunological state of the organism and can change in different diseases and during treatment. Administration of MSCs is not always effective. Treatment of MSCs with different cytokines (in particular IFN-γ) leads to enhancement of their immunomodulatory properties. The aim of this study was to investigate subpopulational alterations and activation markers in lymphocytes (activated and non-activated) after interaction with MSCs and MSCs pretreated with IFN-γ (γMSCs) in vitro. Lymphocytes were co-cultured with MSCs or γMSCs for 4 days. The proportion of CD4+ and CD8 expressing CD25, CD38, CD69, HLA-DR, and PD-1 and distribution of memory and effector subsets were measured by flow cytometry after co-cultivation of lymphocytes with MSCs or γMSCs. The distribution of lymphocyte subpopulations changes during culturing. In non-activated lymphocytes cultured without MSCs, decrease in the proportion of naïve cells and increase in the number of effector cells was observed. That could be explained as activation of lymphocytes in the presence of serum in culturing medium. Co-culturing of lymphocytes with MSCs and γMSCs leads to retention of their non-activated state. Activation of lymphocytes with phytohemagglutinin increases the number of central memory cells and activates marker expression. Interaction with MSCs and γMSCs prevents activation of lymphocytes and keeps their naïve state. Priming with IFN-γ did not induce MSCs inhibitory effect on activation of lymphocytes.
多能间充质基质细胞(MSCs)被广泛用于细胞治疗,尤其是用于预防和治疗移植物抗宿主病。由于其免疫调节特性,MSCs会影响淋巴细胞亚群的组成,这取决于机体的免疫状态,并且在不同疾病和治疗过程中可能会发生变化。MSCs的给药并非总是有效。用不同细胞因子(特别是IFN-γ)处理MSCs会增强其免疫调节特性。本研究的目的是在体外研究淋巴细胞(活化和未活化)与MSCs以及经IFN-γ预处理的MSCs(γMSCs)相互作用后亚群变化和活化标志物。淋巴细胞与MSCs或γMSCs共培养4天。淋巴细胞与MSCs或γMSCs共培养后,通过流式细胞术测量表达CD25、CD38、CD69、HLA-DR和PD-1的CD4+和CD8的比例以及记忆和效应子亚群的分布。培养过程中淋巴细胞亚群的分布会发生变化。在无MSCs培养的未活化淋巴细胞中,观察到幼稚细胞比例降低和效应细胞数量增加。这可以解释为培养基中存在血清时淋巴细胞的活化。淋巴细胞与MSCs和γMSCs共培养可使其保持未活化状态。用植物血凝素激活淋巴细胞会增加中央记忆细胞的数量并激活标志物表达。与MSCs和γMSCs相互作用可防止淋巴细胞活化并使其保持幼稚状态。用IFN-γ预处理并未诱导MSCs对淋巴细胞活化产生抑制作用。