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A novel and easy-to-prepare strontium(II) modified calcium phosphate bone cement with enhanced mechanical properties

机译:一种新型且易于制备的锶(II)改性磷酸钙骨水泥,具有增强的机械性能

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The aim of this study was to evaluate two different approaches to obtaining strontium-modified calcium phosphate bone cements (SrCPCs) without elaborate synthesis of Sr-containing calcium phosphate species as cement precursors that could release biologically effective doses of Sr2+ and thus could improve the healing of osteoporotic bone defects. Using strontium carbonate as a strontium(II) source, it was introduced into a hydroxyapatite-forming cement either by the addition of SrCO3 to an α-tricalcium phosphate-based cement precursor mixture (A-type) or by substitution of CaCO3 by SrCO3 during precursor composition (S-type). The cements, obtained after setting in a water-saturated atmosphere, contained up to 2.2 at.% strontium in different distribution patterns as determined by time-of-flight secondary ion mass spectrometry and energy-dispersive X-ray spectroscopy. The setting time of CPC and A-type cements was in the range of 6.5-7.5 min and increased for substitution-type cements (12.5-13.0 min). Set cements had an open porosity between 26 and 42%. Compressive strength was found to increase from 29 MPa up to 90% in substituted S-type cements (58 MPa). SrCPC samples released between 0.45 and 1.53 mg g-1 Sr2+ within 21 days and showed increased radiopacity. Based on these findings, the SrCPC developed in this study could be beneficial for the treatment of defects of systemically impaired (e.g. osteoporotic) bone.
机译:这项研究的目的是评估获得锶改性的磷酸钙骨水泥(SrCPC)的两种不同方法,而无需精心合成含Sr的磷酸钙物质作为水泥前体,而这些前体可以释放生物有效剂量的Sr2 +,从而可以改善愈合骨质疏松性骨缺损。使用碳酸锶作为锶(II)源,通过在基于α-磷酸三钙的水泥前体混合物(A型)中添加SrCO3或在使用过程中用SrCO3代替CaCO3,将其引入形成羟基磷灰石的水泥中。前体成分(S型)。通过飞行时间二次离子质谱法和能量色散X射线光谱法测定,在水饱和的环境中凝固后获得的水泥以不同的分布方式包含高达2.2 at。%的锶。 CPC和A型水泥的凝结时间在6.5-7.5分钟范围内,而替代型水泥的凝结时间增加(12.5-13.0分钟)。固化的水泥的孔隙率在26%至42%之间。发现在替代S型水泥(58 MPa)中,抗压强度从29 MPa增加到90%。 SrCPC样品在21天内释放了0.45至1.53 mg g-1 Sr2 +,并显示出不透射线。基于这些发现,本研究开发的SrCPC可能有益于治疗系统性受损(例如骨质疏松)骨的缺损。

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