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Anabolic and Catabolic Regimens of Human Parathyroid Hormone 1–34 Elicit Bone- and Envelope-Specific Attenuation of Skeletal Effects in Sost-Deficient Mice

机译:甲状旁腺激素对人类副甲状腺激素1–34的骨代谢和分解代谢的特定骨骼和包膜衰减的影响。

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摘要

PTH is a potent calcium-regulating factor that has skeletal anabolic effects when administered intermittently or catabolic effects when maintained at consistently high levels. Bone cells express PTH receptors, but the cellular responses to PTH in bone are incompletely understood. Wnt signaling has recently been implicated in the osteo-anabolic response to the hormone. Specifically, the Sost gene, a major antagonist of Wnt signaling, is down-regulated by PTH exposure. We investigated this mechanism by treating Sost-deficient mice and their wild-type littermates with anabolic and catabolic regimens of PTH and measuring the skeletal responses. Male Sost+/+ and Sost−/− mice were injected daily with human PTH 1–34 (0, 30, or 90 μg/kg) for 6 wk. Female Sost+/+ and Sost−/− mice were continuously infused with vehicle or high-dose PTH (40 μg/kg · d) for 3 wk. Dual energy x-ray absorptiometry-derived measures of intermittent PTH (iPTH)-induced bone gain were impaired in Sost−/− mice. Further probing revealed normal or enhanced iPTH-induced cortical bone formation rates but concomitant increases in cortical porosity among Sost−/− mice. Distal femur trabecular bone was highly responsive to iPTH in Sost−/− mice. Continuous PTH (cPTH) infusion resulted in equal bone loss in Sost+/+ and Sost−/− mice as measured by dual energy x-ray absorptiometry. However, distal femur trabecular bone, but not lumbar spine trabecular bone, was spared the bone-wasting effects of cPTH in Sost−/− mice. These results suggest that changes in Sost expression are not required for iPTH-induced anabolism. iPTH-induced resorption of cortical bone might be overstimulated in Sost-deficient environments. Furthermore, Sost deletion protects some trabecular compartments, but not cortical compartments, from bone loss induced by high-dose PTH infusion.
机译:PTH是一种有效的钙调节因子,当间歇给药时具有骨骼合成代谢作用,而在始终保持较高水平时则具有分解代谢作用。骨细胞表达PTH受体,但对骨中PTH的细胞反应尚不完全清楚。最近,Wnt信号传导与激素的骨合成代谢有关。具体而言,Wst信号的主要拮抗剂Sost基因被PTH暴露下调。我们通过用PTH的合成代谢和分解代谢方案治疗Sost缺陷型小鼠及其野生型同窝动物并测量骨骼反应来研究这种机制。每天给雄性Sost + / + 和Sost -/-小鼠注射人PTH 1–34(0、30或90μg/ kg),持续6周。将雌性Sost + / + 和Sost -/-小鼠连续注入媒介物或大剂量PTH(40μg/ kg·d)3周。在Sost -/-小鼠中,双能X线吸收法得出的间歇性PTH(iPTH)诱导的骨增加的测量值受损。进一步的调查显示,iPTH诱导的皮质骨形成速率正常或增强,但Sost -// 小鼠的皮质孔隙率随之增加。股骨小梁小骨对Sost -/-小鼠的iPTH高度敏感。通过双能X射线吸收法测量,持续的PTH(cPTH)输注导致Sost + / + 和Sost -// 小鼠的骨丢失相等。然而,在Sost -/-小鼠中,股骨远端小梁骨而不是腰椎小梁骨没有受到cPTH的骨浪费作用。这些结果表明,iPTH诱导的合成代谢不需要Sost表达的变化。在Sost缺乏的环境中,iPTH诱导的皮质骨吸收可能被过度刺激。此外,Sost缺失可保护一些小梁隔室而非皮质隔室免受大剂量PTH输注引起的骨质流失。

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