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Investigating calcium polyphosphate addition to a conventional calcium phosphate cement for bone-interfacing applications.

机译:研究将多磷酸钙添加到用于骨骼界面应用的常规磷酸钙水泥中。

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摘要

Calcium phosphate cements (CPCs) are of great interest in bone regeneration applications because of their biocompatibility and osteoconductivity, and as delivery vehicles for therapeutics; however, delivery applications have been limited by adverse interactions between therapeutics and the cement setting reaction. Amorphous calcium polyphosphate (CPP) yields a biodegradable material with a demonstrated drug delivery capacity following appropriate processing. The incorporation of drug-loaded CPP into a CPC is under consideration as a method of minimizing adverse interactions and extending drug release. This thesis represents the first investigation into the effects of CPP addition on the properties, setting and antibiotic release profile of a conventional apatitic calcium phosphate cement.;CPP addition was found to increase the setting time, reduce the mechanical strength and inhibit the conversion of the CPC starting powders to the set apatitic phase. The most likely mechanism for the observed effect of CPP addition was the adsorption of polyphosphate chains on the particle surfaces, which would inhibit the dissolution of the starting powders and the conversion of apatite precursor phases to apatite, leading to reduced mechanical properties. The detrimental effects of CPP were reduced by limiting the CPP fraction to less than a few weight per cent and increasing the size of the CPP particulate. CPP-containing CPCs were found to degrade more rapidly than the CPP-free controls. The ability of drug-loaded CPP to minimize adverse interactions between drug and cement could not be determined because of the adverse effect of CPP itself and the low vancomycin loads studied, but there was evidence that vancomycin release from apatitic CPCs could be extended through the use of loaded CPP.;As-made, gelled and vancomycin-loaded CPP particulate were added to the powder component of a conventional dicalcium phosphate/tetracalcium phosphate CPC. The setting behaviour, set properties and microstructure of the resulting CPP-CPCs were evaluated with setting time testing (Gilmore needle method), pH testing, mechanical testing, SEM imaging, XRD and FTIR analysis. In vitro degradation and elution behaviour were evaluated by monitoring calcium release (atomic absorbance spectroscopy), mechanical strength and vancomycin release (UV-visual spectrophotometry).
机译:磷酸钙水泥(CPC)具有生物相容性和骨传导性,是治疗骨质疏松症的重要载体,因为它们具有生物相容性和骨传导性。然而,递送应用受到治疗剂和水泥固化反应之间不利相互作用的限制。非晶聚磷酸钙(CPP)经过适当的处理后可产生具有可证明的药物输送能力的可生物降解材料。正在考虑将载有药物的CPP掺入CPC中,作为使不良相互作用最小化和延长药物释放的一种方法。本论文是对CPP添加对常规磷灰石磷酸钙水泥性能,凝结和抗生素释放特性的影响的首次研究。发现CPP添加会增加凝结时间,降低机械强度并抑制其转化。 CPC起始粉末达到设定的乳化阶段。观察到的CPP添加效果最可能的机理是多磷酸盐链在颗粒表面的吸附,这将抑制起始粉末的溶解以及磷灰石前体相向磷灰石的转化,从而导致机械性能下降。通过将CPP比例限制为小于几个重量百分比并增加CPP颗粒的大小,可以降低CPP的有害影响。发现含CPP的CPC比无CPP的对照降解更快。由于CPP本身的不利影响和所研究的低万古霉素负荷,无法确定载药CPP使药物与水泥之间的不良相互作用减至最小的能力,但是有证据表明,通过使用该药,可以延长从apaptic CPCs中释放的万古霉素将制成的,胶凝的和万古霉素负载的CPP颗粒添加到常规磷酸二钙/磷酸四钙CPC的粉末组分中。通过凝固时间测试(Gilmore针法),pH测试,机械测试,SEM成像,XRD和FTIR分析评估所得CPP-CPC的凝固性能,凝固特性和微观结构。通过监测钙释放(原子吸收光谱法),机械强度和万古霉素释放(紫外可见分光光度法)来评估体外降解和洗脱行为。

著录项

  • 作者

    Krausher, Jennifer Lynn.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Engineering Biomedical.;Engineering Materials Science.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 非洲史;
  • 关键词

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