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首页> 外文期刊>Skeletal Muscle >The effects of neuregulin-1β on intrafusal muscle fiber formation in neuromuscular coculture of dorsal root ganglion explants and skeletal muscle cells
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The effects of neuregulin-1β on intrafusal muscle fiber formation in neuromuscular coculture of dorsal root ganglion explants and skeletal muscle cells

机译:Neuregulin-1β对背根神经植物和骨骼肌细胞神经肌肉植物中肠外肌纤维形成的影响

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The formation of intrafusal muscle (IM) fibers and their contact with afferent proprioceptive axons is critical for construction, function, and maintenance of the stretch reflex. Many factors affect the formation of IM fibers. Finding new factors and mechanisms of IM fiber formation is essential for the reconstruction of stretch reflex arc after injury. We established a coculture system of organotypic dorsal root ganglion (DRG) explants and dissociated skeletal muscle (SKM) cells. The formation of IM fibers was observed in this coculture system after neuregulin-1β (NRG-1β) incubation. We found that NRG-1β promoted outgrowth of neurites and migration of neurons from the organotypic DRG explants and that this correlated with an induction of growth-associated protein 43 (GAP-43) expression. NRG-1β also increased the amount of nuclear bag fibers and nuclear chain fibers by elevating the proportion of tyrosine kinase receptor C (TrkC) phenotypic DRG neurons. In addition, we found that the effects of NRG-1β could be blocked by inhibiting ERK1/2, PI3K/Akt, and JAK2/STAT3 signaling pathways. These data imply that NRG-1β promoted neurite outgrowth and neuronal migration from the organotypic DRG explants and that this correlated with an induction of GAP-43 expression. The modulating effects of NRG-1β on TrkC DRG neuronal phenotype may link to promote IM fiber formation. The effects produced by NRG-1β in this neuromuscular coculture system provide new data for the therapeutic potential on IM fiber formation after muscle injury.
机译:肠内肌肉(IM)纤维的形成及其与传入的预丙基轴突的接触对于拉伸反射的结构,功能和维护至关重要。许多因素会影响IM纤维的形成。寻找IM纤维形成的新因素和机制对于造成伤害后的拉伸反射弧的重建至关重要。我们建立了有机型背根神经节(DRG)外植体和解离骨骼肌(SKM)细胞的共培育体系。在Neuregulin-1β(NRG-1β)孵育后,在该共培养系统中观察到IM纤维的形成。我们发现NRG-1β从有机型DRG外植体促进了神经癖的生长和神经元的迁移,并且这种情况与生长相关蛋白质43(GAP-43)表达的诱导相关。 NRG-1β通过升高酪氨酸激酶受体C(TRKC)表型DRG神经元的比例,增加了核袋纤维和核链纤维的量。此外,我们发现NRG-1β的效果可以通过抑制ERK1 / 2,PI3K / AKT和JAK2 / Stat3信号传导途径来阻止。这些数据意味着NRG-1β促进了来自有机型DRG外植体的神经沸石过多和神经元迁移,并且这种情况与间隙-33表达的诱导相关。 NRG-1β对TRKC DRG神经元表型的调节效应可以连杆促进IM纤维形成。 NRG-1β在该神经肌肉培养系统中产生的效果为肌肉损伤后IM纤维形成的治疗潜力提供了新数据。

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