Gohin S, Carriero A, Chenu C, Pitsillides A A, Arnett T R, Marenzana M
Department of Bioengineering, Imperial College London, London, UK.
Department of Cell and Developmental Biology, University College London, London, UK.
Cell Biochem Funct. 2016 Mar;34(2):52-62. doi: 10.1002/cbf.3164. Epub 2016 Feb 1.
There is strong evidence that vasodilatory nitric oxide (NO) donors have anabolic effects on bone in humans. Parathyroid hormone (PTH), the only osteoanabolic drug currently approved, is also a vasodilator. We investigated whether the NO synthase inhibitor L-NAME might alter the effect of PTH on bone by blocking its vasodilatory effect. BALB/c mice received 28 daily injections of PTH[1-34] (80 µg/kg/day) or L-NAME (30 mg/kg/day), alone or in combination. Hindlimb blood perfusion was measured by laser Doppler imaging. Bone architecture, turnover and mechanical properties in the femur were analysed respectively by micro-CT, histomorphometry and three-point bending. PTH increased hindlimb blood flow by >30% within 10 min of injection (P < 0.001). Co-treatment with L-NAME blocked the action of PTH on blood flow, whereas L-NAME alone had no effect. PTH treatment increased femoral cortical bone volume and formation rate by 20% and 110%, respectively (P < 0.001). PTH had no effect on trabecular bone volume in the femoral metaphysis although trabecular thickness and number were increased and decreased by 25%, respectively. Co-treatment with L-NAME restricted the PTH-stimulated increase in cortical bone formation but had no clear-cut effects in trabecular bone. Co-treatment with L-NAME did not affect the mechanical strength in femurs induced by iPTH. These results suggest that NO-mediated vasorelaxation plays partly a role in the anabolic action of PTH on cortical bone.
有强有力的证据表明,血管舒张性一氧化氮(NO)供体对人体骨骼具有合成代谢作用。甲状旁腺激素(PTH)是目前唯一被批准的骨合成代谢药物,它也是一种血管舒张剂。我们研究了NO合酶抑制剂L-NAME是否可能通过阻断其血管舒张作用来改变PTH对骨骼的影响。BALB/c小鼠每天接受28次PTH[1-34](80μg/kg/天)或L-NAME(30mg/kg/天)的注射,单独注射或联合注射。通过激光多普勒成像测量后肢血流。分别通过显微CT、组织形态计量学和三点弯曲分析股骨的骨结构、骨转换和力学性能。注射PTH后10分钟内,后肢血流量增加>30%(P<0.001)。与L-NAME联合治疗可阻断PTH对血流的作用,而单独使用L-NAME则无影响。PTH治疗分别使股骨干皮质骨体积和形成率增加20%和110%(P<0.001)。PTH对股骨干骺端小梁骨体积无影响,尽管小梁厚度增加而数量减少了25%。与L-NAME联合治疗限制了PTH刺激的皮质骨形成增加,但对小梁骨没有明确影响。与L-NAME联合治疗不影响iPTH诱导的股骨力学强度。这些结果表明,NO介导的血管舒张在PTH对皮质骨的合成代谢作用中部分起作用。