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Effects of Silicon on Osteoclast Cell Mediated Degradation In Vivo Osteogenesis and Vasculogenesis of Brushite Cement

机译:硅对破石细胞介导的钙钛矿水泥降解体内成骨和血管生成的影响

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摘要

Calcium phosphate cements (CPCs) are being widely used for treating small scale bone defects. Among the various CPCs, brushite (dicalcium phosphate dihydrate, DCPD) cement is widely used due to its superior solubility and ability to form new bone. In the present study, we have studied the physical, mechanical, osteoclast-like-cells differentiation and in vivo osteogenic and vasculogenic properties of silicon (Si) doped brushite cements. Addition of Si did not alter the phase composition of final product and regardless of Si level, all samples included β-tricalcium phosphate (β-TCP) and DCPD. 1.1 wt. % Si addition increased the compressive strength of undoped brushite cement from 4.78±0.21 MPa to 5.53±0.53 MPa, significantly. Cellular activity was studied using receptor activator of nuclear factor κβ ligand (RANKL) supplemented osteoclast-like-cells precursor RAW 264.7 cell. Phenotypic expressions of the cells confirmed successful differentiation of RAW264.7 monocytes to osteoclast-like-cells on undoped and doped brushite cements. An increased activity of osteoclast-like cells was noticed due to Si doping in the brushite cement. An excellent new bone formation was found in all cement compositions, with significant increase in Si doped brushite samples as early as 4 weeks post implantation in rat femoral model. After 4 weeks of implantation, no significant difference was found in blood vessel formation between the undoped and doped cements, however, a significant increase in vasculgenesis was found in 0.8 and 1.1 wt. % Si doped brushite cements after 8 weeks. These results show the influence of Si dopant on physical, mechanical, in vitro osteoclastogenesis and in vivo osteogenic and vasculogenic properties of brushite cements.
机译:磷酸钙水泥(CPC)被广泛用于治疗小规模的骨缺损。在各种CPC中,透钙磷石(磷酸二钙二水合物,DCPD)水泥由于其优异的溶解性和形成新骨的能力而被广泛使用。在本研究中,我们研究了硅(Si)掺杂透钙磷石水泥的物理,机械,破骨细胞样细胞分化以及体内成骨和血管生成特性。添加Si不会改变最终产物的相组成,并且无论Si含量如何,所有样品均包含β-磷酸三钙(β-TCP)和DCPD。 1.1重量添加硅%可将未掺杂的透钙磷石水泥的抗压强度从4.78±0.21 MPa提高到5.53±0.53 MPa。使用核因子κβ配体的受体激活剂(RANKL)补充破骨细胞样细胞前体RAW 264.7细胞来研究细胞活性。细胞的表型表达证实在未掺杂和掺杂的透钙磷石胶结物上,RAW264.7单核细胞成功分化为破骨细胞样细胞。由于在透钙铁石水泥中掺入了Si,因此发现了破骨细胞样细胞的活性增加。在大鼠股骨模型植入后的4周内,所有水泥组合物中均发现了极好的新骨形成,并且掺Si的透钙磷石样品显着增加。植入4周后,未掺杂和掺杂水泥之间的血管形成没有发现显着差异,但是,发现0.8和1.1 wt。%的血管生成明显增加。 8周后,添加%Si的透钙磷灰石水泥。这些结果表明,硅掺杂剂对透钙磷石水泥的物理,机械,体外破骨作用以及体内成骨和血管生成特性的影响。

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