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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Regulation of osteoclast differentiation and function by phosphate: potential role of osteoclasts in the skeletal abnormalities in hypophosphatemic conditions.
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Regulation of osteoclast differentiation and function by phosphate: potential role of osteoclasts in the skeletal abnormalities in hypophosphatemic conditions.

机译:磷酸调节破骨细胞的分化和功能:在低磷状态下破骨细胞在骨骼异常中的潜在作用。

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摘要

Mice fed with a low Pi diet exhibited decreased osteoclast number. Hyp mice also showed decreased osteoclasts, and high Pi reversed it. Low Pi reduced osteoclast formation and bone resorption in vitro. Hypophosphatemia may suppress osteoclast differentiation/function, leading to skeletal abnormalities. INTRODUCTION: Skeletal abnormalities seen in hypophosphatemic disorders indicate a critical role of phosphate (Pi) in skeletogenesis. However, the role of osteoclasts in the pathogenesis of the disturbed skeletogenesis is unclear. MATERIALS AND METHODS: Mice fed with a low-Pi diet and Hyp mice that are characterized by hypophosphatemia and impaired osteogenesis were studied. Effects of Pi on osteoclast formation and bone resorption were also examined in vitro. RESULTS: Histomorphometric examination showed that mice on a low-Pi diet exhibited decreased osteoclast number. Furthermore, osteoclast number in Hyp mice was also decreased compared with wildtype (WT) mice. Of note, feeding of Hyp mice with high-Pi diet significantly reversed hypophosphatemia, improved disturbed osteogenesis, and increased osteoclast number. Osteoclast-like cell (OLC) formation and bone resorption in Hyp bone marrow cells was not different from WT bone marrow cells. On the other hand, OLC formation and bone resorption were decreased in conjunction with reduced mRNA expression of RANKL in WT bone marrow cells cultured in the medium containing low Pi (0.5 mM). Recombinant human matrix extracellular phosphoglycoprotein (MEPE), a candidate for phosphatonin, also decreased osteoclast formation, whereas fibroblast growth factor 23 (FGF23), another phosphatonin candidate, showed no effects. CONCLUSIONS: Our results suggest that Pi controls the differentiation and function of osteoclasts. These actions of Pi on osteoclasts may be associated with the pathogenesis of the skeletal abnormalities in hypophosphatemic disorders.
机译:低磷饮食喂养的小鼠表现出破骨细胞减少。 Hyp小鼠还显示破骨细胞减少,而高Pi可以逆转。低磷可减少破骨细胞的形成和体外骨吸收。低磷血症可能会抑制破骨细胞的分化/功能,导致骨骼异常。简介:在低磷酸盐血症中发现的骨骼异常表明磷酸盐(Pi)在骨骼生成中起关键作用。然而,破骨细胞在骨骼生成异常的发病机制中的作用尚不清楚。材料与方法:研究了低磷饮食和以低磷血症和成骨受损为特征的Hyp小鼠。还研究了Pi对破骨细胞形成和骨吸收的影响。结果:组织形态计量学检查显示,低Pi饮食的小鼠破骨细胞数量减少。此外,与野生型(WT)小鼠相比,Hyp小鼠的破骨细胞数量也减少了。值得注意的是,用高Pi饮食喂养Hyp小鼠可显着逆转低磷血症,改善不正常的成骨作用和增加破骨细胞数量。 Hyp骨髓细胞中的破骨细胞样细胞(OLC)的形成和骨吸收与WT骨髓细胞没有区别。另一方面,在低Pi(0.5 mM)培养基中培养的WT骨髓细胞中,OLLC的形成和骨吸收减少,同时RANKL mRNA表达降低。重组人基质细胞外磷酸糖蛋白(MEPE)(一种用于磷酰化处理的蛋白)也减少了破骨细胞的形成,而成纤维细胞生长因子23(FGF23)(另一种磷酰化处理剂的选择)则没有作用。结论:我们的结果表明,Pi控制破骨细胞的分化和功能。 Pi对破骨细胞的这些作用可能与低磷酸盐血症的骨骼异常的发病机理有关。

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