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在间歇给予甲状旁腺激素时,骨合成反应中 PHOSPHO1 和碱性磷酸酶的表达增加。

Increased PHOSPHO1 and alkaline phosphatase expression during the anabolic bone response to intermittent parathyroid hormone delivery.

机构信息

Functional Genetics Division, The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Midlothian, UK.

Comparative Biomedical Sciences, The Royal Veterinary College, London, UK.

出版信息

Cell Biochem Funct. 2023 Mar;41(2):189-201. doi: 10.1002/cbf.3772. Epub 2022 Dec 20.

Abstract

The administration of intermittent parathyroid hormone (iPTH) is anabolic to the skeleton. Recent studies with cultured osteoblasts have revealed that the expression of PHOSPHO1, a bone-specific phosphatase essential for the initiation of mineralisation, is regulated by PTH. Therefore, this study sought to determine whether the bone anabolic response to iPTH involves modulation of expression of Phospho1 and of other enzymes critical for bone matrix mineralisation. To mimic iPTH treatment, primary murine osteoblasts were challenged with 50 nM PTH for 6 h in every 48 h period for 8 days (4 cycles), 14 days (7 cycles) and 20 days (10 cycles) in total. The expression of both Phospho1 and Smpd3 was almost completely inhibited after 4 cycles, whereas 10 cycles were required to stimulate a similar response in Alpl expression. To explore the in vivo role of PHOSPHO1 in PTH-mediated osteogenesis, the effects of 14- and 28-day iPTH (80 µg/kg/day) administration was assessed in male wild-type (WT) and Phospho1 mice. The expression of Phospho1, Alpl, Smpd3, Enpp1, Runx2 and Trps1 expression was enhanced in the femora of WT mice following iPTH administration but remained unchanged in the femora of Phospho1 mice. After 28 days of iPTH administration, the anabolic response in the femora of WT was greater than that noted in Phospho1 mice. Specifically, cortical and trabecular bone volume/total volume, as well as cortical thickness, were increased in femora of iPTH-treated WT but not in iPTH-treated Phospho1 mice. Trabecular bone osteoblast number was also increased in iPTH-treated WT mice but not in iPTH-treated Phospho1  mice. The increased levels of Phospho1, Alpl, Enpp1 and Smpd3 in WT mice in response to iPTH administration is consistent with their contribution to the potent anabolic properties of iPTH in bone. Furthermore, as the anabolic response to iPTH was attenuated in mice deficient in PHOSPHO1, this suggests that the osteoanabolic effects of iPTH are at least partly mediated via bone mineralisation processes.

摘要

甲状旁腺激素(iPTH)的间歇性给药对骨骼具有合成代谢作用。最近对培养的成骨细胞的研究表明,PHOSPHO1 的表达受到调节,PHOSPHO1 是一种对矿化起始至关重要的骨特异性磷酸酶。因此,本研究旨在确定 iPTH 对骨骼的合成代谢反应是否涉及 PHOSPHO1 和其他对骨基质矿化至关重要的酶的表达调节。为了模拟 iPTH 治疗,将原代鼠成骨细胞用 50nM PTH 刺激,每 48 小时刺激一次,共 8 天(4 个周期)、14 天(7 个周期)和 20 天(10 个周期)。在 4 个周期后,几乎完全抑制了 PHOSPHO1 和 Smpd3 的表达,而在 10 个周期后,Alpl 的表达才受到刺激。为了探索 PHOSPHO1 在 PTH 介导的成骨作用中的体内作用,评估了 14 天和 28 天 iPTH(80μg/kg/天)给药对雄性野生型(WT)和 Phospho1 小鼠的影响。在 iPTH 给药后,WT 小鼠的股骨中 PHOSPHO1、Alpl、Smpd3、Enpp1、Runx2 和 Trps1 的表达增强,但 Phospho1 小鼠的股骨中 PHOSPHO1 表达不变。在 iPTH 给药 28 天后,WT 小鼠的合成代谢反应大于 Phospho1 小鼠。具体而言,iPTH 治疗的 WT 小鼠的皮质和小梁骨体积/总体积以及皮质厚度增加,但 iPTH 治疗的 Phospho1 小鼠则没有。iPTH 治疗的 WT 小鼠的小梁骨成骨细胞数量也增加,但 iPTH 治疗的 Phospho1 小鼠则没有。WT 小鼠对 iPTH 给药的反应中 PHOSPHO1、Alpl、Enpp1 和 Smpd3 水平的升高与它们对 iPTH 在骨骼中产生的强大合成代谢特性的贡献一致。此外,由于 PHOSPHO1 缺乏的小鼠对 iPTH 的合成代谢反应减弱,这表明 iPTH 的骨合成代谢作用至少部分通过骨矿化过程介导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/472f/10946561/34e9d9d09735/CBF-41-189-g006.jpg

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