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首页> 外文期刊>Central European Journal of Chemistry >Organic/Inorganic bioactive materials Part IV: In vitro assessment of bioactivity of gelatin-calcium phosphate silicate/wollastonite hybrids
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Organic/Inorganic bioactive materials Part IV: In vitro assessment of bioactivity of gelatin-calcium phosphate silicate/wollastonite hybrids

机译:有机/无机生物活性材料第四部分:明胶-磷酸钙硅酸盐/硅灰石杂化物的生物活性体外评估

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Biohybrids consisting of gelatin (G) and calcium phosphate silicate/wollastonite (CPS/W) have not been prepared so far. In this work our results are focused on the possibility of obtaining G-CPS/W bioactive hybrids in vitro. XRD, FTIR, SEM/EDS techniques were employed to characterize the synthesized hybrid materials. FTIR shows that before immersion in 1.5 SBF the "red shift" of COO- band for pure G is observed. The presence of this bond could be attributed to the formation of COO-Ca~(2+) via non-biomimetic route. After immersion in 1.5 SBF, FTIR shows the presence of A- and B-type carbonate containing hydroxyapatite (A/B-CO3HA) . ESD and FTIR show that small amount of calcite (CaCO3) are present after in vitro test in 1.5 SBF for 3 days. XRD reveals that CO3HA and small amounts of CaCO3 can be detected after in vitro test. SEM results obtained for immersed samples show that hydroxyapatite (HA) particles fully covered the surface of the hybrids by a layer composed of spherulites. At higher magnification, very small elongated crystallites could be observed.
机译:到目前为止,尚未制备由明胶(G)和磷酸钙硅酸盐/硅灰石(CPS / W)组成的生物混合物。在这项工作中,我们的结果集中在体外获得G-CPS / W生物活性杂种的可能性上。利用XRD,FTIR,SEM / EDS技术对合成的杂化材料进行表征。 FTIR显示,在浸入1.5 SBF之前,观察到纯G的COO能带“红移”。该键的存在可归因于通过非仿生途径形成的COO-Ca〜(2+)。浸入1.5 SBF后,FTIR表明存在含有羟基磷灰石的A-和B-型碳酸盐(A / B-CO 3 HA)。 ESD和FTIR显示,在1.5 SBF中进行3天体外测试后,存在少量方解石(CaCO3)。 XRD显示体外试验后可检测到CO3HA和少量CaCO3。浸泡样品的SEM结果表明,羟基磷灰石(HA)颗粒通过球晶组成的层完全覆盖了杂化体的表面。在更高的放大倍率下,可以观察到非常小的细长晶体。

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