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Implant-derived magnesium induces local neuronal production of CGRP to improve bone-fracture healing in rats

机译:植入物衍生的镁诱导CGRP的局部神经元生成从而改善大鼠的骨骨折愈合

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摘要

Orthopedic implants containing biodegradable magnesium have been used for fracture repair with considerable efficacy; however, the underlying mechanisms by which these implants improve fracture healing remain elusive. Here we show the formation of abundant new bone at peripheral cortical sites after intramedullary implantation of a pin containing ultrapure magnesium into the intact distal femur in rats. This response was accompanied by substantial increases of neuronal calcitonin gene-related polypeptide-α (CGRP) in both the peripheral cortex of the femur and the ipsilateral dorsal root ganglia (DRG). Surgical removal of the periosteum, capsaicin denervation of sensory nerves or knockdown in vivo of the CGRP-receptor-encoding genes Calcrl or Ramp1 substantially reversed the magnesium-induced osteogenesis that we observed in this model. Overexpression of these genes, however, enhanced magnesium-induced osteogenesis. We further found that an elevation of extracellular magnesium induces magnesium transporter 1 (MAGT1)-dependent and transient receptor potential cation channel, subfamily M, member 7 (TRPM7)-dependent magnesium entry, as well as an increase in intracellular adenosine triphosphate (ATP) and the accumulation of terminal synaptic vesicles in isolated rat DRG neurons. In isolated rat periosteum-derived stem cells, CGRP induces CALCRL-and RAMP1-dependent activation of cAMP-responsive element binding protein 1 (CREB1) and SP7 (also known as osterix), and thus enhances osteogenic differentiation of these stem cells. Furthermore, we have developed an innovative, magnesium-containing intramedullary nail that facilitates femur fracture repair in rats with ovariectomy-induced osteoporosis. Taken together, these findings reveal a previously undefined role of magnesium in promoting CGRP-mediated osteogenic differentiation, which suggests the therapeutic potential of this ion in orthopedics.
机译:含有可生物降解镁的整形外科植入物已被用于骨折修复,并且疗效显着。然而,这些植入物改善骨折愈合的潜在机制仍然难以捉摸。在这里,我们显示了将含有超纯镁的大头针植入大鼠完整的股骨远端后,在外围皮质位点形成了丰富的新骨。这种反应伴随着股骨外周皮质和同侧背根神经节(DRG)中神经元降钙素基因相关多肽-α(CGRP)的大量增加。外科手术去除骨膜,辣椒素使神经感觉神经失神经或CGRP受体编码基因Calcr1或Ramp1的体内敲除实质上逆转了我们在该模型中观察到的镁诱导的成骨作用。然而,这些基因的过表达增强了镁诱导的成骨作用。我们进一步发现,细胞外镁的升高会诱导镁转运蛋白1(MAGT1)依赖性和瞬时受体电位阳离子通道,亚家族M,成员7(TRPM7)依赖性镁进入,以及细胞内三磷酸腺苷(ATP)的增加和分离的大鼠DRG神经元中的突触末梢小泡的积累。在分离的大鼠骨膜来源干细胞中,CGRP诱导cAMP响应元件结合蛋白1(CREB1)和SP7(也称为osterix)的CALCRL和RAMP1依赖性激活,从而增强这些干细胞的成骨分化。此外,我们开发了一种创新的含镁髓内钉,可促进卵巢切除术诱发的骨质疏松大鼠的股骨骨折修复。综上所述,这些发现揭示了镁在促进CGRP介导的成骨分化中的作用尚未确定,这表明该离子在骨科中具有治疗潜力。

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