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Signaling pathways involved in anti-inflammatory effects of Pulsed Electromagnetic Field in microglial cells

机译:脉冲电磁场中脉冲电磁场中抗炎作用的信号传导途径

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Literature studies suggest important protective effects of low-frequency, low-energy pulsed electromagnetic fields (PEMFs) on inflammatory pathways affecting joint and cerebral diseases. However, it is not clear on which bases they affect neuroprotection and the mechanism responsible is yet unknown. Therefore the aim of this study was to identify the molecular targets of PEMFs anti-neuroinflammatory action. The effects of PEMF exposure in cytokine production by lipopolysaccharide (LPS)-activated N9 microglial cells as well as the pathways involved, including adenylyl cyclase (AC), phospholipase C (PLC), protein kinase C epsilon (PKC-epsilon) and delta (PKC-delta), p38, ERK1/2, JNK1/2 mitogen activated protein kinases (MAPK), Akt and caspase 1, were investigated. In addition, the ability of PEMFs to modulate ROS generation, cell invasion and phagocytosis, was addressed. PEMFs reduced the LPS-increased production of TNF-alpha and IL-1 beta in N9 cells, through a pathway involving JNK1/2. Furthermore, they decreased the LPS-induced release of IL-6, by a mechanism not dependent on AC, PLC, PKC-epsilon, PKC-delta, p38, ERK1/2, JNK1/2, Akt and caspase 1. Importantly, a significant effect of PEMFs in the reduction of crucial cell functions specific of microglia like ROS generation, cell invasion and phagocytosis was found. PEMFs inhibit neuroinflammation in N9 cells through a mechanism involving, at least in part, the activation of JNK MAPK signalling pathway and may be relevant to treat a variety of diseases characterized by neuroinflammation.
机译:文献研究表明低频,低能量脉冲电磁场​​(PEMF)对影响关节和脑病的炎性途径的重要保护作用。然而,目前尚不清楚他们影响神经保护的基础和负责的机制尚未赘言。因此,本研究的目的是鉴定PEMFS抗神经炎症作用的分子靶标。 PEMF暴露在脂多糖(LPS) - 活化的N9微胶质细胞以及所涉及的途径,包括腺苷环化酶(AC),磷脂酶C(PLC),蛋白激酶Cε(PKC-EPSILON)和DELTA( PKC-DELTA),P38,ERK1 / 2,JNK1 / 2丝裂原活化蛋白激酶(MAPK),AKT和Caspase 1。此外,解决了PEMFS调节ROS生成,细胞侵袭和吞噬作用的能力。 PEMF通过涉及JNK1 / 2的途径降低了N9细胞中TNF-α和IL-1β的LPS增加的产量。此外,它们通过不依赖于AC,PLC,PKC-EPSILON,PKC-DELTA,P38,ERK1 / 2,JNK1 / 2,AKT和CASPase1,减少了IL-6的LPS诱导的IL-6释放。重要的是,a发现PEMFS在诸如ROS生成,细胞侵袭和吞噬作用等小微胶质细胞特异性的关键细胞功能的显着影响。 PEMFS通过涉及JNK MAPK信号通路的激活的机制抑制N9细胞中的神经炎炎症,并且可能与治疗具有神经炎症的各种疾病相关。

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