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首页> 外文期刊>Acta biomaterialia >Response of human bone marrow stromal cells to a resorbable P(2)O(5)-SiO(2)-CaO-MgO-Na(2)O-K(2)O phosphate glass ceramic for tissue engineering applications.
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Response of human bone marrow stromal cells to a resorbable P(2)O(5)-SiO(2)-CaO-MgO-Na(2)O-K(2)O phosphate glass ceramic for tissue engineering applications.

机译:人骨髓基质细胞对可再吸收的p(2)O(5)-SiO(2)-CaO-MgO-Na(2)O-K(2)O磷酸盐玻璃陶瓷用于组织工程应用的响应。

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摘要

This work focuses on the synthesis and characterization of a novel bioresorbable glass ceramic phosphate-based material (GC-ICEL). More specifically, its solubility in different aqueous media (water, Tris-HCl and acellular simulated body fluid) and the response of human stromal cells cultured on it were investigated. X-ray diffraction analysis showed the presence of two crystalline phases identified as Na(2)Mg(PO(4))(3) and Ca(2)P(2)O(7) and dissolution tests highlighted a preferential dissolution of the Na(2)Mg(PO(4))(3) phase and of the residual amorphous phase in all the chosen media. Soaking tests in simulated body fluid showed precipitation of a hydroxyapatite layer, demonstrating the bioactivity of GC-ICEL, which is partially due to the reported bioactivity of Ca(2)P(2)O(7). The effect of GC-ICEL on adhesion, proliferation and osteoblastic gene expression of human bone marrow-derived stromal cells was also studied. Combining molecular and biochemical analyses, it was found that bone marrow cell differentiation was stimulated over proliferation on GC-ICEL. Moreover, the expression of bone-related genes in cells cultured on GC-ICEL confirmed the bioactivity of this phosphate-based glass ceramic, which might have a stimulatory effect on osteogenesis.
机译:这项工作侧重于新型生物可吸收玻璃陶瓷磷酸盐基材料(GC-ICEL)的合成和表征。更具体地,其在不同含水介质(水,Tris-HCl和细胞模拟体液)中的溶解度和在其上培养的人体基质细胞的响应进行了研究。 X射线衍射分析显示存在鉴定为Na(2)Mg(PO(4))(3)和Ca(2)P(2)O(2)O(7)和溶解试验的两个结晶相的存在突出了优先溶解Na(2)Mg(PO(4))(3)相和残留的无定形相中所选择的培养基。模拟体液中的浸泡试验显示羟基磷灰石层的沉淀,证明了GC-Icel的生物活性,这部分是由于报告的Ca(2)P(2)O(7)的生物活性。研究了GC-Icel对人骨髓衍生的基质细胞的粘附,增殖和骨细胞基因表达的影响。分子和生化分析结合,发现骨髓细胞分化刺激了GC-Icel的增殖。此外,在GC-Icel培养的细胞中表达骨相关基因证实了该磷酸基玻璃陶瓷的生物活性,这可能对骨质发生刺激作用。

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