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首页> 外文期刊>The Journal of Musculoskeletal and Neuronal Interactions >Three-dimensional microstructural properties of regenerated mineralizing tissue after PTH (1–34) treatment in a rabbit tibial lengthening model
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Three-dimensional microstructural properties of regenerated mineralizing tissue after PTH (1–34) treatment in a rabbit tibial lengthening model

机译:兔胫骨延长模型中PTH(1-34)处理后再生矿化组织的三维微观结构特性

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Since the approval of parathyroid hormone (PTH) as treatment for osteoporosis, PTH has increasingly been investigated for bone repair and regeneration. The aim of the study was to investigate the effects of intermittent PTH treatment on the microstructure of regenerated mineralizing tissue after distraction osteogenesis in rabbits. After tibial mid-diaphyseal osteotomy the callus was distracted 1 mm/day for 10 days. 72 rabbits were divided in to 3 groups, which daily received a PTH (1–34) 25 μg/kg injection for 30 days; a saline injection for 10 days and a PTH injection for 20 days; or a saline injection for 30 days. The microstructure of the regenerate was assessed by micro computed tomography (μCT). In all 51 obtained specimens were evaluated morphometrically using three different volumes of interests. The results showed that treatment with PTH during distraction osteogensis resulted in a significantly higher trabecular number, a more isotropic trabecular orientation, a higher connectivity density, and a higher mineralizing tissue mass. We also found that distraction calluses treated with PTH were more mature than the non-treated. Conclusion: treatment with PTH resulted in an enhanced microstructure of the newly regenerated mineralizing tissue indicating that PTH has a potential role as a stimulating agent during distraction osteogenesis.
机译:自从甲状旁腺激素(PTH)被批准用于骨质疏松症治疗以来,PTH已被越来越多地研究用于骨修复和再生。本研究的目的是研究间歇性PTH处理对成兔牵张成骨后再生矿化组织的微观结构的影响。胫骨中干phy端截骨后,将愈伤组织以1 mm /天的速度分散10天。将72只兔子分为3组,每天接受PTH(1–34)25μg/ kg注射,持续30天。盐水注射10天,PTH注射20天;或注射盐水30天。通过微型计算机断层扫描(μCT)评估再生物的微观结构。使用三种不同的体积,对所有51个样本进行形态计量学评估。结果表明,在牵张成骨术期间使用PTH进行治疗可导致小梁数目明显增加,各向同性小梁取向更大,连接密度更高和矿化组织质量更高。我们还发现,用PTH治疗的分心老茧比未治疗的成熟。结论:PTH处理可增强新近再生的矿化组织的微观结构,表明PTH在牵张成骨过程中具有潜在的刺激作用。

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