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Absence of p21(WAF1/CIP1/SDI1) protects against osteopenia and minimizes bone loss after ovariectomy in a mouse model

机译:在小鼠模型中,p21(WAF1 / CIP1 / SDI1)的缺失可防止骨质疏松,并最大程度地减少卵巢切除术后的骨质流失

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摘要

p21(WAF1/CIP1/SDI1) is a critical sentinel of the cell cycle that plays an important role in determining cell fate with respect to proliferation, differentiation and apoptosis. Recent studies have demonstrated that inhibition/loss of p21 promotes osteo-chondro differentiation in progenitor/stem cells, and that p21 knockout (p21-/-) mice demonstrate enhanced bone regeneration compared to wild-type controls after a non-critical size defect. It was therefore hypothesized that the absence of p21 may also protect against bone loss through enhancing bone formation, tilting the balance away from bone resorption, in an ovariectomy-induced osteopenia mouse model, investigated via microCT imaging. While p21-/- mice demonstrated significantly less bone loss after ovariectomy compared to wild-type controls, no increase in the number osteoclasts or osteoblasts in the bone or bone marrow was observed, nor was there an increase in osteoclast activity. Therefore, while the absence of p21 protected mice against estrogen mediated bone loss, the mechanisms/pathways responsible remained elusive. This study demonstrates that p21 may play a significant role in bone remodeling, and a better understanding of how the p21 pathway regulates bone anabolism and catabolism could lead to novel therapies for osteoporosis in the future.
机译:p21 (WAF1 / CIP1 / SDI1)是细胞周期的重要前哨,在决定细胞命运有关增殖,分化和凋亡方面起着重要作用。最近的研究表明,p21的抑制/缺失促进了祖细胞/干细胞中的骨软骨分化,并且与野生型对照相比,p21敲除(p21 -/-)小鼠的骨骼再生增强了。非关键尺寸缺陷。因此,假设在卵巢切除术诱发的骨质疏松症小鼠模型中,通过microCT成像研究,不存在p21也可以通过增强骨骼形成,使平衡远离骨骼吸收来防止骨丢失。与野生型对照组相比,p21 -/-小鼠卵巢切除术后的骨丢失明显减少,但未观察到骨或骨髓中破骨细胞或成骨细胞的数量增加,也未观察到破骨细胞的增加。破骨细胞活性。因此,尽管缺乏p21保护小鼠免受雌激素介导的骨质流失,但负责任的机制/途径仍然难以捉摸。这项研究表明,p21可能在骨骼重塑中起重要作用,并且对p21途径如何调节骨骼合成代谢和分解代谢的更好理解可能会在将来导致骨质疏松症的新疗法。

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