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Fabrication and characterization of porous calcium polyphosphate scaffolds

机译:多孔聚磷酸钙支架的制备与表征

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摘要

Porous calcium polyphosphate (CPP) scaffolds with different polymerization degree and crystalline phases were prepared, and then analyzed by scanning electron microscopy (SEM), Thermmogravimetry (TG) and X-ray diffraction (XRD). Number average polymerization degree was calculated by analyzing the calcining process of raw material Ca(H_2PO_4)_2, as a polycondensation reaction. Amorphous CPP were prepared by the quenching from the melt of Ca(H_2PO_4)_2 after calcining, and CPP with different polymerization degree was prepared by controlling the calcining time. Meanwhile, CPP with the same polymerization degree was prepared to amorphous or different crystalline phases CPP which was made from crystallization of amorphous CPP. In vitro degradation studies using 0.1 M of tris-buffered solution were performed to assess the effect of polymerization degree or crystalline phases on mechanical properties and weight loss of the samples. With the increase of polymerization degree, the weight loss during the degradation decreased, contrarily the strength of CPP increased. The degradation velocity of amorphous CPP, α-CPP, β-CPP and γ-CPP with the same polymerization degree decreased in turn at the same period. The full weight loss period of CPP can be controlled between 17 days and more than 1 year. The results of this study suggest that CPP ceramics have potential applications for bone tissue engineering.
机译:制备了具有不同聚合度和结晶相的多孔聚磷酸钙(CPP)支架,然后通过扫描电子显微镜(SEM),热重法(TG)和X射线衍射(XRD)进行了分析。通过分析原料Ca(H_2PO_4)_2的煅烧过程来计算数均聚合度,作为缩聚反应。煅烧后,从Ca(H_2PO_4)_2的熔体中淬火,制得非晶态CPP,控制煅烧时间,制得聚合度不同的CPP。同时,将聚合度相同的CPP制备成由非晶态CPP结晶制得的非晶态或结晶相不同的CPP。进行了使用0.1 M Tris缓冲溶液的体外降解研究,以评估聚合度或结晶相对样品的机械性能和重量损失的影响。随着聚合度的增加,降解过程中的失重减少,相反,CPP的强度增加。聚合度相同的非晶态CPP,α-CPP,β-CPP和γ-CPP的降解速度在同一时期依次降低。 CPP的整个减肥期间可以控制在17天到1年之间。这项研究的结果表明,CPP陶瓷在骨组织工程中具有潜在的应用。

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  • 来源
    《Journal of Materials Science》 |2006年第8期|2429-2434|共6页
  • 作者单位

    Department of Polymer Science and Engineering Sichuan University;

    Department of Polymer Science and Engineering Sichuan University;

    Department of Polymer Science and Engineering Sichuan University;

    National Engineering Research Center for Health Care and Medical Devices;

    Department of Polymer Science and Engineering Sichuan University;

    Department of Polymer Science and Engineering Sichuan University;

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