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Daily parathyroid hormone administration enhances bone turnover and preserves bone structure after severe immobilization?¢????induced bone loss

机译:每天固定使用甲状旁腺激素可增强骨骼更新,并在严重固定后可保持骨骼结构?

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Immobilization, as a result of motor?¢????complete spinal cord injury (SCI), is associated with severe osteoporosis. Whether parathyroid hormone (PTH) administration would reduce bone loss after SCI remains unclear. Thus, female mice underwent sham or surgery to produce complete spinal cord transection. PTH (80???? ???? g/kg) or vehicle was injected subcutaneously (SC) daily starting on the day of surgery and continued for 35????days. Isolated tibias and femurs were examined by microcomputed tomography scanning (micro?¢????CT) and histology and serum markers of bone turnover were measured. Micro?¢????CT analysis of tibial metaphysis revealed that the SCI?¢????vehicle animals exhibited 49% reduction in fractional trabecular bone volume and 18% in trabecular thickness compared to sham?¢????vehicle controls. SCI?¢????vehicle animals also had 15% lower femoral cortical thickness and 16% higher cortical porosity than sham?¢????vehicle counterparts. Interestingly, PTH administration to SCI animals restored 78% of bone volume, increased connectivity to 366%, and lowered structure model index by 10% compared to sham?¢????vehicle animals. PTH further favorably attenuated femoral cortical bone loss to 5% and prevented the SCI?¢????associated cortical porosity. Histomorphometry evaluation of femurs of SCI?¢????vehicle animals demonstrated a marked 49% and 38% decline in osteoblast and osteoclast number, respectively, and 35% reduction in bone formation rate. In contrast, SCI?¢????PTH animals showed preserved osteoblast and osteoclast numbers and enhanced bone formation rate. Furthermore, SCI?¢????PTH animals had higher levels of bone formation and resorption markers than either SCI?¢???? or sham?¢????vehicle groups. Collectively, these findings suggest that intermittent PTH receptor activation is an effective therapeutic strategy to preserve bone integrity after severe immobilization.
机译:由于运动完全性脊髓损伤(SCI)而导致的固定与严重的骨质疏松症有关。尚不清楚尚不清楚甲状旁腺激素(PTH)的使用是否会减少SCI后的骨质流失。因此,对雌性小鼠进行假手术或手术以产生完全的脊髓横断。从手术当天开始,每天皮下注射(TH)80 mg / kg PTH或溶媒(SC),并持续35 d。通过显微计算机断层扫描(microCT)检查孤立的胫骨和股骨,并测量组织学和骨转换的血清标志物。胫骨干physi端的显微CT分析显示,与假手术对照组相比,SCI整车动物的小梁骨小骨体积减少了49%,小梁厚度减少了18%。 。与假手术相比,SCI车辆动物的股骨皮质厚度也低15%,皮质孔隙率高16%。有趣的是,与假手术动物相比,对SCI动物施用PTH可以恢复78%的骨体积,将连接性提高到366%,并使结构模型指数降低10%。 PTH将股骨皮质骨损失进一步有利地减至5%,并防止了SCI相关的皮质孔隙。对SCI载体动物股骨的组织形态计量学评价表明,成骨细胞和破骨细胞数分别下降了49%和38%,而骨形成率下降了35%。相反,SCI-PTH动物显示出成骨细胞和破骨细胞数目得以保留,并且骨形成速率提高。此外,SCI P PTH动物比SCI marker PTH动物具有更高水平的骨形成和吸收标记。还是假的?车辆组。总的来说,这些发现表明间歇性PTH受体激活是在严重固定后保持骨完整性的有效治疗策略。

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