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骨组织不同区域对 PTH(1-34)的促合成代谢作用及轴向负荷的区域性反应模式:小鼠研究

Regional modular responses in different bone compartments to the anabolic effect of PTH (1-34) and axial loading in mice.

机构信息

Skeletal Biology Group, Comparative Biomedical Sciences, Royal Veterinary College. Royal College Street, NW1 0TU London, United Kingdom.

Skeletal Biology Group, Comparative Biomedical Sciences, Royal Veterinary College. Royal College Street, NW1 0TU London, United Kingdom.

出版信息

Bone. 2023 May;170:116720. doi: 10.1016/j.bone.2023.116720. Epub 2023 Feb 26.

Abstract

Beneficial effects of intermittent parathyroid hormone (PTH) on bone mass and architecture are described to either simply add to, or to synergise with those of mechanical loading. We evaluate whether interaction with in vivo loading is reinforced by PTH dosing regimen and exhibits compartment-specific sensitivities. Female 12-week-old C57Bl6 mice received daily (7/7) or interrupted 5 day/week (5/7) PTH for 3 weeks (two vehicle groups). All mice had six loading episodes (12N) applied to right tibia (left, non-loaded) for the last 2 weeks. Micro-CT scans were used to evaluate mass and architecture in almost the entire cortical and proximal trabecular regions. Epiphyseal cortical, trabecular and marrow space volumes, and bony growth-plate bridge incidence were evaluated. Statistical analyses employed a linear mixed-effects model at each percentile and 2-way ANOVA with post-hoc test for epiphyses and bridging. We found that daily PTH enhances cortical mass and modifies shape along almost the entire tibia and that these effects are partly mitigated by brief interruption in treatment. Mechanical loading alone augments cortical mass and modifies shape but only in a region proximal to the tibiofibular junction. The effect of combining load and daily PTH dosing is solely additive for cortical bone mass with no significant load: PTH interaction, but exhibits clear synergy with interrupted PTH treatment. Daily, not interrupted PTH stimulates trabecular bone gains, yet load:PTH interaction is present at limited regions with both daily and interrupted treatment. PTH treatment, but not loading, modifies epiphyseal bone but, in contrast, only loading modifies bridge number and areal density. Our findings demonstrate impressive local effects on tibial mass and shape of combined loading and PTH that are sensitive to dosing regimen and exert their effects modularly. These findings emphasise a need to clarify PTH dosing regimens and that advantages could be accrued by aligning treatment accordingly to patient requirements and life-style.

摘要

甲状旁腺激素(PTH)间歇性给药对骨量和骨结构的有益影响被描述为单纯的累加作用,或与机械加载协同作用。我们评估了体内加载与 PTH 给药方案的相互作用是否增强,并表现出特定部位的敏感性。12 周龄雌性 C57Bl6 小鼠接受了 3 周的每日(7/7)或间歇性 5 天/周(5/7)PTH 治疗(两组均为载体)。所有小鼠在最后 2 周内接受了 6 次(12N)加载(右侧胫骨,左侧未加载)。使用 micro-CT 扫描评估几乎整个皮质和近侧小梁区域的质量和结构。评估骺端皮质、小梁和骨髓腔体积以及骨生长板桥接的发生率。统计分析采用线性混合效应模型在每个百分位数和 2 路方差分析,以及骺端和桥接的事后检验。我们发现,每日 PTH 可增强皮质骨量并改变整个胫骨的形状,而治疗短暂中断会部分减轻这些影响。单独的机械加载可增加皮质骨量并改变形状,但仅在胫骨腓骨联合近端区域。结合负荷和每日 PTH 给药的效果仅对皮质骨量表现出单纯的累加作用,没有明显的负荷:PTH 相互作用,但与间歇性 PTH 治疗存在明显的协同作用。每日而非间歇性 PTH 刺激小梁骨增加,但在每日和间歇性治疗时仅在有限区域存在负荷:PTH 相互作用。PTH 治疗而非加载可改变骺端骨,但相反,仅加载可改变桥接数量和面积密度。我们的研究结果表明,联合负荷和 PTH 对胫骨质量和形状具有显著的局部影响,这些影响对剂量方案敏感,并以模块化方式发挥作用。这些发现强调了需要阐明 PTH 给药方案的重要性,并且根据患者的需求和生活方式调整治疗可以带来优势。

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