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Calcium phosphate nanoparticles are associated with inorganic phosphate-induced osteogenic differentiation of rat bone marrow stromal cells

机译:磷酸钙纳米粒子与大鼠骨髓基质细胞的无机磷酸盐诱导的成骨分化有关

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In the present study, we demonstrated that calcium phosphate (Cap) nanoparticles formed in cell culture media were implicated in the process of high inorganic phosphate (Pi) mediated osteogenic differentiation of rat bone marrow stromal cells (BMSCs). Exposure of BMSCs in vitro to high Pi-containing media reduced alkaline phosphatase (ALP) activity and the expressions of osteoblast-specific genes. The sediments of CaP nanoparticles were observed at the cell surface and some of them were concomitantly found inside cells at high Pi concentration. In addition, treatment the cells with pyrophosphate (PPi), an inhibitor of calcium crystal formation, abrogated the ALP activity induced by high Pi, suggesting the contribution of CaP nanoparticles. Moreover, for isolated CaP nanoparticles, there was a trend of conversion from amorphous calcium phosphate to hydroxyapatite with elevated Pi. The particle size of CaP increased and the surface morphology changed from spherical to irregular due to increased concentrations of serum proteins incorporated into CaP nanoparticles. The study demonstrated that those physicochemical properties of CaP nanoparticles played an important role in modulating BMSCs differentiation. Furthermore, the addition of Pi in the osteogenic media resulted in a dose-dependent increase in matrix mineralization, while treatment of the cells with PPi suppressed Pi-induced calcium deposition. The findings indicated that calcium deposition in the matrix partly came from the spontaneous precipitation of CaP nanoparticles. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:在本研究中,我们证明,在细胞培养基中形成的磷酸钙(帽)纳米颗粒涉及大无机磷酸盐(PI)介导的大鼠骨髓基质细胞(BMSC)的骨质发生分化。 BMSCs在体外暴露于含高PI培养基还原碱性磷酸酶(ALP)活性和成骨细胞特异性基因的表达。在细胞表面观察到帽纳米颗粒的沉积物,并且在高Pi浓度下伴随着其中一些内容。另外,用焦磷酸盐(PPI)处理细胞,钙晶体形成的抑制剂,废除高PI诱导的ALP活性,表明盖纳米粒子的贡献。此外,对于分离的帽纳米颗粒,用升高的Pi从非晶磷酸盐转化为羟基磷灰石的转化趋势。由于掺入帽纳米颗粒中的血清蛋白质的浓度增加,帽的粒径增加和表面形态从球形变为不规则。该研究表明,帽纳米粒子的那些物理化学性质在调节BMSCs分化中起着重要作用。此外,在成骨内介质中添加PI导致基质矿化的剂量依赖性增加,同时用PPI处理细胞抑制的PI诱导的钙沉积。结果表明,基质中的钙沉积部分来自帽纳米颗粒的自发沉淀。 (c)2015 Elsevier Ireland Ltd.保留所有权利。

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