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Pamidronate Alters the Growth Plate in the Oim Mouse Model for Osteogenesis Imperfecta

机译:帕米膦酸改变成骨不全症的Oim小鼠模型中的生长板

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摘要

Bisphosphonates alleviate bone pain and fractures associated with osteogenesis imperfecta (OI). Using the oim mouse model to simulate variations in OI severity, the effect of pamidronate on bone growth was assessed. Homozygous (oim/oim) and heterozygous (oim/wt) mice from 4 to 12 weeks of age were given pamidronate at 0 mg/kg/wk (control), 1.25 mg/kg/wk (low) and 2.5 mg/kg/wk (high). Humerus and ulna lengths were reduced in oim/oim mice relative to those of the oim/wt. Further, the oim/oim genotype exhibited a 23.5% prevalence of fractures in these bones as compared to the 2.8% prevalence observed in the oim/wt mice. Pamidronate tended to reduce fracture prevalence in a dose dependent manner for the oim/oim genotype (p<0.08) but had no effect on the low fracture prevalence in oim/wtmice. The high dose of pamidronate reduced bone length in females of both genotypes but not males when compared to control (p<0.01). Pamidronate increased growth plate area (p<0.05) by increasing growth plate height, particularly the proliferative and hypertrophic zones, in both genotypes indicating reduced growth plate cell turnover. The increased area coincided with increased osteoclast numbers in the metaphyseal region (p<0.05) though when corrected for the greater mineralized surface area that accompanies bisphosphonate treatment, osteoclasts per surface area were reduced indicating reduced resorptive capacity. This study demonstrated that the effects of pamidronate were independent of the degree of collagen deficit and fracture prevalence was improved in the most severe OI model, the oim/oim genotype.
机译:双膦酸盐可减轻骨痛和与成骨不全症(OI)相关的骨折。使用oim小鼠模型模拟OI严重程度的变化,评估了帕米膦酸对骨生长的影响。对4至12周龄的纯合(oim / oim)和杂合(oim / wt)小鼠分别给予0 mg / kg / wk(对照),1.25 mg / kg / wk(低)和2.5 mg / kg /周(高)。 oim / oim小鼠的肱骨和尺骨长度相对于oim / wt减少。此外,与oim / wt小鼠中观察到的2.8%的患病率相比,oim / oim基因型在这些骨骼中显示出23.5%的骨折患病率。对于oim / oim基因型,帕米膦酸盐倾向于以剂量依赖性方式降低骨折患病率(p <0.08),但对oim / wtmice的低骨折患病率没有影响。与对照相比,高剂量的帕米膦酸减少了两种基因型的女性的骨长,但男性没有(p <0.01)。在两种基因型中,帕米膦酸通过增加生长板高度,特别是增生区和肥大区,增加了生长板面积(p <0.05),表明生长板细胞周转率降低。增大的面积与干phy端区域中破骨细胞数量的增加(p <0.05)相吻合,尽管对双膦酸盐处理所伴随的更大的矿化表面积进行校正后,单位表面积的破骨细胞减少,表明吸收能力降低。这项研究表明,在最严重的OI / oim基因型OI模型中,帕米膦酸的作用与胶原蛋白缺乏程度无关,并且骨折发生率得到改善。

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