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NMDA enhances stretching-induced differentiation of osteobalsts through the ERK1/2 signaling pathway.

机译:NMDA通过ERK1 / 2信号通路增强拉伸诱导的骨bal分化。

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Activation of the excitatory neurotransmitter N-methyl-d-aspartate (NMDA) and stretching both increase Ca(2+) influx in osteoblastic cells. We postulated that NMDA would enhance the osteoblastic cell's response to stretching. The goal of this study was to investigate, in the presence of the neurotransmitter NMDA, the effect of mechanical loading on osteoblast's stage of differentiation and the mitogen-activated protein kinase (MAPK) signaling pathway associated with it. Rat primary osteoblastic cells were subjected to cyclic, equibiaxial stretch for 48 h in the presence or absence of NMDA. Pretreatment with 0.5 mM NMDA significantly enhanced the stretching magnitude-dependent increase in osteogenesis markers. MK801, an antagonist of NMDA receptors, abolished those responses. To further study the mechanism of this response, osteoblastic cells were stretched for 5, 15, or 60 min in the absence of NMDA. Cyclic stretch induced a rapid increase in extracellular signal-regulated kinase ERK1/2 phosphorylationwith the peak at 15 min, but no changes were noted in p38 and JNK pathway signaling. NMDA could enhance ERK1/2 phosphorylation stimulated by stretching. U0126, an inhibitor of ERK1/2, blocked the increase in osteogenesis markers. In conclusion, the current study demonstrates that there is a synergistic effect between mechanical stimulation and NMDA in osteoblasts. ERK1/2 signaling may be the common pathway in the increased response to stretching in the presence of NMDA in osteoblastic cells.
机译:兴奋性神经递质N-甲基-d-天冬氨酸(NMDA)的激活和拉伸都增加成骨细胞Ca(2+)流入。我们推测NMDA会增强成骨细胞对伸展的反应。这项研究的目的是在存在神经递质NMDA的情况下研究机械负荷对成骨细胞分化阶段以及与其相关的促分裂原活化蛋白激酶(MAPK)信号通路的影响。在存在或不存在NMDA的情况下,对大鼠原代成骨细胞进行循环等双轴拉伸48小时。用0.5 mM NMDA预处理显着增强成骨标记物的拉伸幅度依赖性增加。 NMDA受体的拮抗剂MK801消除了这些反应。为了进一步研究这种应答的机制,在不存在NMDA的情况下将成骨细胞拉伸5、15或60分钟。循环拉伸诱导细胞外信号调节激酶ERK1 / 2磷酸化迅速增加,并在15分钟达到峰值,但在p38和JNK途径信号转导中未见变化。 NMDA可以增强拉伸刺激的ERK1 / 2磷酸化。 U0126是ERK1 / 2的抑制剂,可阻止成骨标志物的增加。总而言之,当前的研究表明,机械刺激与成骨细胞中的NMDA有协同作用。 ERK1 / 2信号可能是成骨细胞中NMDA存在下对拉伸反应增强的常见途径。

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