AI Article Synopsis

  • The administration of intermittent parathyroid hormone (iPTH) stimulates bone formation by regulating the expression of key enzymes like PHOSPHO1, which is crucial for bone mineralization.
  • In experiments with cultured osteoblasts, PHOSPHO1 expression was significantly inhibited after a few cycles of iPTH, while other enzymes like Alpl required more cycles for similar effects.
  • In vivo studies showed that iPTH-treated wild-type mice had enhanced bone volume and mineralization markers, whereas mice lacking PHOSPHO1 did not exhibit these anabolic responses, indicating the importance of PHOSPHO1 in the bone-building effects of iPTH.

Article 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.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10946561PMC
http://dx.doi.org/10.1002/cbf.3772DOI Listing

Publication Analysis

Top Keywords

expression phospho1
16
phospho1 mice
16
phospho1
12
anabolic response
12
response ipth
12
days cycles
12
ipth administration
12
ipth
9
intermittent parathyroid
8
parathyroid hormone
8

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!