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Therapeutic impact of low amplitude high frequency whole body vibrations on the osteogenesis imperfecta mouse bone

机译:低振幅高频全身振动对成骨不全小鼠骨骼的治疗作用

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摘要

Osteogenesis imperfecta (OI) is characterized by extremely brittle bone. Currently, bisphosphonate drugs allow a decrease of fracture by inhibiting bone resorption and increasing bone mass but with possible long term side effects. Whole body mechanical vibrations (WBV) treatment may offer a promising route to stimulate bone formation in OI patients as it has exhibited health benefits on both muscle and bone mass in human and animal models. The present study has investigated the effects of WBV (45 Hz, 0.3 g, 15 minutes/days, 5 days/week) in young OI (oim) and wild type female mice from 3 to 8 weeks of age. Vibration therapy resulted in a significant increase in the cortical bone area and cortical thickness in the femur and tibia diaphysis of both vibrated oim and wild type mice compared to sham controls. Trabecular bone was not affected by vibration in the wild type mice; vibrated oim mice, however, exhibited significantly higher trabecular bone volume fraction in the proximal tibia. Femoral stiffness and yield load in three point bending were greater in the vibrated wild type mice than in sham controls, most likely attributed to the increase in femur cortical cross sectional area observed in the μCT morphology analyses. The vibrated oim mice showed a trend toward improved mechanical properties, but bending data had large standard deviations and there was no significant difference between vibrated and non-vibrated oim mice. No significant difference of the bone apposition was observed in the tibial metaphyseal trabecular bone for both the oim and wild type vibrated mice by histomorphometry analyses of calcein labels. At the mid diaphysis, the cortical bone apposition was not significantly influenced by the WBV treatment in both the endosteum and periosteum of the oim vibrated mice while a significant change is observed in the endosteum of the vibrated wild type mice. As only a weak impact in bone apposition between the vibrated and sham groups is observed in the histological sections, it is possible that WBV reduced bone resorption, resulting in a relative increase in cortical thickness.Whole body vibration appears as a potential effective and innocuous means for increasing bone formation and strength, which is particularly attractive for treating the growing skeleton of children suffering from brittle bone disease or low bone density pathologies without the long term disadvantages of current pharmacological therapies.
机译:成骨不全症(OI)的特征是骨骼极脆。当前,双膦酸盐药物通过抑制骨吸收和增加骨量来减少骨折,但可能具有长期副作用。全身机械振动(WBV)治疗可能会为刺激OI患者的骨形成提供一条有希望的途径,因为它在人和动物模型中均显示出对肌肉和骨骼质量的健康益处。本研究调查了WBV(45 Hz,0.3 g,15分钟/天,5天/周)对3至8周龄的OI(oim)和野生型雌性小鼠的影响。与假手术对照组相比,振动疗法导致的oim和野生型小鼠的股骨和胫骨干骨的皮质骨面积和皮质厚度显着增加。小梁骨不受野生型小鼠振动的影响;然而,振动的oim小鼠在胫骨近端表现出明显更高的小梁骨体积分数。在振动的野生型小鼠中,三点弯曲时的股骨刚度和屈服负荷比假对照组更大,这很可能归因于在μCT形态分析中观察到的股骨皮质横截面积的增加。振动的oim小鼠表现出趋向于改善机械性能的趋势,但是弯曲数据具有较大的标准偏差,振动的和不振动的oim小鼠之间没有显着差异。通过钙黄绿素标记物的组织形态学分析,对于oim和野生型振动小鼠,在胫骨干phy端小梁骨中未观察到骨骼并置的显着差异。在骨干中期,oim振动小鼠的内膜和骨膜中的WBV处理均未显着影响皮质骨并置,而振动野生型小鼠的内膜中观察到了显着变化。由于在组织学切片中仅观察到振动和假手术组之间对骨骼的影响较小,因此WBV可能会降低骨吸收,从而导致皮质厚度相对增加。全身振动似乎是潜在的有效无害手段用于增加骨形成和强度的方法,对于治疗患有脆性骨疾病或低骨密度病状的儿童的生长中的骨骼特别有吸引力,而没有当前药物疗法的长期缺点。

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