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Vertebral compression exacerbates osteoporotic pain in an ovariectomy-induced osteoporosis rat model

机译:在卵巢切除术诱发的骨质疏松大鼠模型中,椎骨压缩加剧了骨质疏松性疼痛

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STUDY DESIGN.: Basic pain study using osteoporotic rodent models. OBJECTIVE.: To examine alterations in distribution of pain-related neuropeptides after compressive force on osteoporotic vertebrae and their chronic pain-related properties. SUMMARY OF BACKGROUND DATA.: We previously reported significantly increased production of calcitonin gene-related peptide (CGRP), a marker of inflammatory pain, in the dorsal root ganglia (DRG) of vertebrae in osteoporosis-model ovariectomized (OVX) rats. Here, we hypothesized that longitudinal compressive force on vertebrae can affect osteoporotic pain properties, which has not been examined yet. METHODS.: OVX rats were used as the osteoporosis model. Female Sprague-Dawley rats were prepared and Fluoro-Gold (FG) neurotracer was applied to the periosteal surface of the Co5 vertebra. After FG labeling, the animals were divided into 4 groups: Control, Control + compression, OVX, and OVX + compression. The Control groups were not ovariectomized. In the compression groups, K-wires were stabbed transversely through Co4 and Co6 with Co5 compressed longitudinally by rubber bands bridged between the 2. One, 2, 4, and 8 weeks after surgery, bilateral S1 to S3 DRGs were excised for immunofluorescence assays. Expression of CGRP and activating transcription factor 3, a marker of neuronal injury, were compared among the 4 groups. RESULTS.: Sustained upregulation of CGRP in DRG neurons was observed after compression of the Co5 vertebra, and Co5 compression caused significant increase in CGRP production in DRG neurons, whereas a greater level of activating transcription factor 3 upregulation was observed in DRGs in OVX rats after dynamic vertebral compression 8 weeks after surgery, implying potential neuropathic pain. CONCLUSION.: There was sustained upregulation of CGRP and activating transcription factor 3 in DRGs in osteoporotic model rats compared with controls, and levels were further enhanced by dynamic vertebral compression. These findings imply that dynamic compression stress on vertebrae can exacerbate osteoporotic pain by inducing both inflammatory and neuropathic pain mediators.
机译:研究设计:使用骨质疏松啮齿动物模型进行基本疼痛研究。目的:研究骨质疏松椎骨受压后疼痛相关神经肽分布的变化及其与慢性疼痛相关的特性。背景数据摘要:我们先前报道在骨质疏松模型去卵巢(OVX)大鼠的椎背根神经节(DRG)中,降钙素基因相关肽(CGRP)的产生显着增加,该肽是炎症性疼痛的标志。在这里,我们假设对椎骨的纵向压力会影响骨质疏松性疼痛的性质,目前尚未进行检查。方法:以OVX大鼠为骨质疏松症模型。准备雌性Sprague-Dawley大鼠,并将Fluoro-Gold(FG)神经示踪剂应用于Co5椎骨的骨膜表面。 FG标记后,将动物分为4组:对照组,对照组+压迫,OVX和OVX +压迫。对照组未切除卵巢。在压迫组中,在手术后第2、1、2、4和8周之间桥接橡皮筋,将K线横向刺穿Co4和Co6,并纵向压缩Co5。将双侧S1至S3 DRG切除以进行免疫荧光测定。比较了4组中CGRP的表达和活化的转录因子3(神经元损伤的标志物)。结果:压缩Co5椎骨后,DRG神经元中的CGRP持续上调,并且Co5压缩导致DRG神经元中CGRP的产生显着增加,而在OVX大鼠中DRGs中观察到更高水平的激活转录因子3上调术后8周进行动态椎体压缩,暗示潜在的神经性疼痛。结论:与对照组相比,骨质疏松模型大鼠的DRGs中CGRP和激活转录因子3持续上调,并且通过动态椎体压缩进一步提高了水平。这些发现表明,椎骨上的动态压迫应力可通过诱导炎症性和神经性疼痛介质来加剧骨质疏松性疼痛。

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