Osteogenic effects of a potent Src-over-Abl-selective kinase inhibitor in the mouse.

نویسندگان

  • Richard J Murrills
  • Shoichi Fukayama
  • Frank Boschelli
  • Jeanne J Matteo
  • Jane Owens
  • Jennifer M Golas
  • Dharmesh Patel
  • Giovan Lane
  • Yao-Bin Liu
  • Laura Carter
  • Jason Jussif
  • Vikki Spaulding
  • Yanong D Wang
  • Diane H Boschelli
  • John C McKew
  • X Jian Li
  • Susan Lockhead
  • Colleen Milligan
  • Yogendra P Kharode
  • Veronica Diesl
  • Yuchen Bai
  • Max Follettie
  • Frederick J Bex
  • Barry Komm
  • Peter V N Bodine
چکیده

Src-null mice have higher bone mass because of decreased bone resorption and increased bone formation, whereas Abl-null mice are osteopenic, because of decreased bone formation. Compound I, a potent inhibitor of Src in an isolated enzyme assay (IC(50) 0.55 nM) and a Src-dependent cell growth assay, with lower activity on equivalent Abl-based assays, potently, but biphasically, accelerated differentiation of human mesenchymal stem cells to an osteoblast phenotype (1-10 nM). Compound I (≥0.1 nM) also activated osteoblasts and induced bone formation in isolated neonatal mouse calvariae. Compound I required higher concentrations (100 nM) to inhibit differentiation and activity of osteoclasts. Transcriptional profiling (TxP) of calvaria treated with 1 μM compound I revealed down-regulation of osteoclastic genes and up-regulation of matrix genes and genes associated with the osteoblast phenotype, confirming compound I's dual effects on bone resorption and formation. In addition, calvarial TxP implicated calcitonin-related polypeptide, β (β-CGRP) as a potential mediator of compound I's osteogenic effect. In vivo, compound I (1 mg/kg s.c.) increased vertebral trabecular bone volume 21% (microcomputed tomography) in intact female mice. Increased trabecular volume was also detected histologically in a separate bone, the femur, particularly in the secondary spongiosa (100% increase), which underwent a 171% increase in bone formation rate, a 73% increase in mineralizing surface, and a 59% increase in mineral apposition rate. Similar effects were observed in ovariectomized mice with established osteopenia. We conclude that the Src inhibitor compound I is osteogenic, presumably because of its potent stimulation of osteoblast differentiation and activation, possibly mediated by β-CGRP.

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عنوان ژورنال:
  • The Journal of pharmacology and experimental therapeutics

دوره 340 3  شماره 

صفحات  -

تاریخ انتشار 2012