Institute of Ecology and Genetics of Microorganisms, Ural Division of the Russian Academy of Sciences - Affiliated Branch of Perm' Federal Research Center, Ural Division of the Russian Academy of Sciences, Perm, Russia.
Bull Exp Biol Med. 2020 Nov;170(1):84-87. doi: 10.1007/s10517-020-05009-y. Epub 2020 Nov 22.
We studied the effect of graphene oxide (GO) nanoparticles on differentiation of human myeloid suppressor cells (MDSC) in an in vitro system. Separated mononuclear cells of healthy donors were induced with cytokines (IL-6 and GM-CSF) into the MDSC phenotype (both polymorphonuclear (PMN-MDSC) and monocyte (M-MDSC) subsets of these cells were taken into account). Pegylated GO nanoparticles (GO-PEG; mean size 569±14 nm, PEG content ~20%) were used. GO-PEG in low concentrations (2.5 and 5 μg/ml) increased the percentage of MDSC in cultures, but reduced their content in high concentration (10 μg/ml). After exposure to GO-PEG (2.5 and 5 μg/ml), the MDSC content increased at the expense of M-MDSC, while the level of PMN-MDSC did not change. The decrease in MDSC levels after exposure to high doses of GO-PEG (10 μg/ml) was due to a decrease in PMN-MDSC. Thus, GO-PEG nanoparticles can oppositely regulate differentiation of MDSC by inhibiting or stimulating differentiation of these cells depending on the concentration.
我们研究了氧化石墨烯(GO)纳米粒子在体外系统中对人髓系抑制细胞(MDSC)分化的影响。从健康供体中分离的单核细胞在细胞因子(IL-6 和 GM-CSF)的诱导下分化为 MDSC 表型(考虑到这些细胞的多形核(PMN-MDSC)和单核(M-MDSC)亚群)。使用了聚乙二醇化 GO 纳米粒子(GO-PEG;平均粒径 569±14nm,PEG 含量约 20%)。低浓度(2.5 和 5μg/ml)的 GO-PEG 增加了培养物中 MDSC 的百分比,但在高浓度(10μg/ml)下降低了它们的含量。在暴露于 GO-PEG(2.5 和 5μg/ml)后,MDSC 含量的增加是以 M-MDSC 为代价的,而PMN-MDSC 的水平没有变化。暴露于高剂量 GO-PEG(10μg/ml)后 MDSC 水平的降低是由于PMN-MDSC 的减少。因此,GO-PEG 纳米粒子可以通过抑制或刺激这些细胞的分化,根据浓度相反地调节 MDSC 的分化。