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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Capsaicin-sensitive sensory neurons contribute to the maintenance of trabecular bone integrity.
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Capsaicin-sensitive sensory neurons contribute to the maintenance of trabecular bone integrity.

机译:辣椒素敏感的感觉神经元有助于维持小梁骨的完整性。

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摘要

This investigation used capsaicin to selectively lesion unmyelinated sensory neurons in rats. Neuronal lesioning induced a loss of trabecular integrity, reduced bone mass and strength, and depleted neuropeptides in nerve and bone. These data suggest that capsaicin-sensitive sensory nerves contribute to trabecular bone integrity. INTRODUCTION: Familial dysautomia is an autosomal recessive disease in which patients suffer from unmyelinated sensory neuron loss, reduced BMD, and frequent fractures. It has been proposed that the loss of neurotransmitters synthesized by unmyelinated neurons adversely affects bone integrity in this hereditary syndrome. The purpose of this study was to determine whether small sensory neurons are required for the maintenance of bone integrity in rats. MATERIALS AND METHODS: Ten-month-old male Sprague-Dawley rats were treated with either capsaicin or vehicle. In vivo DXA scanning and muCT scanning, and histomorphometry were used to evaluate BMD, structure, and cellular activity.Bone strength was measured in distal femoral sections. Body weight and gastrocnemius/soleus weights were measured and spontaneous locomotor activity was monitored. Peroneal nerve morphometry was evaluated using light and electron microscopy. Substance P and calcitonin gene-related peptide (CGRP) content in the sciatic nerve and proximal tibia were determined by enzyme immunoassay (EIA). Substance P signaling was measured using a sciatic nerve stimulation extravasation assay. RESULTS: Four weeks after capsaicin treatment, there was a loss of BMD in the metaphyses of the tibia and femur. In the proximal tibia, the osteoclast number and surface increased, osteoblast activity and bone formation were impaired, and trabecular bone volume and connectivity were diminished. There was also a loss of bone strength in the distal femur. No changes occurred in body weight, 24-h grid-crossing activity, weight bearing, or muscle mass after capsaicin treatment, indicating that skeletal unloading did not contribute to the lossof bone integrity. Capsaicin treatment destroyed 57% of the unmyelinated sensory axons, reduced the substance P and CGRP content in the sciatic nerve and proximal tibia, and inhibited neurogenic extravasation. CONCLUSION: These results support the hypothesis that capsaicin-sensitive sensory neurons contribute to the maintenance of trabecular bone integrity. Capsaicin-sensitive neurons have efferent functions in the tissues they innervate, effects mediated by transmitters released from the peripheral nerve terminals. We postulate that the deleterious effects of capsaicin treatment on trabecular bone are mediated by reductions in local neurotransmitter content and release.
机译:这项研究使用辣椒素选择性损伤大鼠的非髓鞘感觉神经元。神经元病变导致小梁完整性丧失,骨量和强度降低,以及神经和骨骼中的神经肽消耗。这些数据表明辣椒素敏感的感觉神经有助于骨小梁的完整性。简介:家族性自主神经障碍是一种常染色体隐性遗传疾病,患者患有无髓感觉神经元损失,骨密度降低和频繁骨折。已经提出,在这种遗传综合征中,由无髓鞘的神经元合成的神经递质的损失会不利地影响骨骼的完整性。这项研究的目的是确定是否需要小的感觉神经元来维持大鼠的骨骼完整性。材料与方法:用辣椒素或赋形剂治疗10个月大的雄性Sprague-Dawley大鼠。使用体内DXA扫描和muCT扫描以及组织形态学方法评估BMD,结构和细胞活性,并测量股骨远端切片的骨强度。测量体重和腓肠肌/比目鱼体重,并监测自发运动能力。使用光学和电子显微镜评估腓骨神经形态。通过酶免疫法(EIA)测定坐骨神经和胫骨近端的P物质和降钙素基因相关肽(CGRP)的含量。使用坐骨神经刺激外渗测定法测量P物质的信号传导。结果:辣椒素治疗四周后,胫骨和股骨干phy端骨密度降低。在胫骨近端,破骨细胞数量和表面增加,成骨细胞活性和骨形成受损,小梁骨体积和连接性降低。股骨远端也失去了骨强度。辣椒素治疗后,体重,24 h跨网活动,负重或肌肉质量均未发生变化,表明骨骼的卸载并没有导致骨完整性的丧失。辣椒素治疗破坏了57%的无髓感觉轴突,降低了坐骨神经和胫骨近端的P物质和CGRP含量,并抑制了神经源性外渗。结论:这些结果支持了辣椒素敏感的感觉神经元有助于维持小梁骨完整性的假说。对辣椒素敏感的神经元在它们所支配的组织中具有传出的功能,这种作用由周围神经末梢释放的递质介导。我们假设辣椒素治疗小梁骨的有害作用是通过减少局部神经递质含量和释放来介导的。

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