Petrov V N, Agaeva E V, Popovkina O E, Konoplyannikov A G, Kaplan M A, Lepekhina L A, Sayapina E V, Semenkova I V
A. F. Tsyb Medical Radiological Research Center, Affiliated Branch of the National Medical Research Radiological Center, Ministry of Health of the Russian Federation, Obninsk, Russia.
Bull Exp Biol Med. 2017 Dec;164(2):233-240. doi: 10.1007/s10517-017-3965-x. Epub 2017 Nov 27.
We studied in vivo modifying effect of autotransfusion of human bone marrow mesenchymal stromal cells on ROS generation and production of cytokines (TNFα,TNFβ, IL-1α, IL-10, IFNγ, and GM-CSF) and PGE by mononuclear cells of patients (N=21) with chronic heart failure. These parameters were evaluated prior to (control) and after (immediately and on day 14) intravenous administration of stromal cells in doses of 100-200×10. Immediately after autotransfusion, significant increase of in vitro zymosan-induced chemiluminescence of blood mononuclear cells from 10 patients was observed. At later terms after autotransfusion (day 14), inhibition of chemiluminescent activity of blood mononuclear cells was revealed in 50% patients. We discuss possible mechanisms of involvement of transplanted autologous bone marrow mesenchymal stromal cells in reprogramming of blood mononuclear phagocytes from the pro- to anti-inflammatory phenotype under conditions of their in vivo interaction manifesting in transition from activation to inhibition of ROS-producing activity of macrophages and significant suppression of in vitro LPS-induced production of TNFα and GM-CSF by blood mononuclears against the background of significantly elevated TNFβ, IL-10, and IL-1α concentrations.
我们研究了自体输注人骨髓间充质基质细胞对慢性心力衰竭患者(N = 21)单核细胞产生ROS以及细胞因子(TNFα、TNFβ、IL - 1α、IL - 10、IFNγ和GM - CSF)和PGE的体内调节作用。在静脉注射剂量为100 - 200×10的基质细胞之前(对照)以及之后(立即和第14天)对这些参数进行评估。自体输注后立即观察到,10例患者血液单核细胞的体外酵母聚糖诱导的化学发光显著增加。在自体输注后的后期(第14天),50%的患者出现血液单核细胞化学发光活性受到抑制。我们讨论了在体内相互作用条件下,移植的自体骨髓间充质基质细胞参与血液单核吞噬细胞从促炎表型重编程为抗炎表型的可能机制,这种相互作用表现为巨噬细胞产生ROS的活性从激活转变为抑制,以及在TNFβ、IL - 10和IL - 1α浓度显著升高的背景下,血液单核细胞体外LPS诱导的TNFα和GM - CSF产生受到显著抑制。