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首页> 外文期刊>Journal of materials science >An X-ray micro-fluorescence study to investigate the distribution of Al, Si, P and Ca ions in the surrounding soft tissue after implantation of a calcium phosphate-mullite ceramic composite in a rabbit animal model
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An X-ray micro-fluorescence study to investigate the distribution of Al, Si, P and Ca ions in the surrounding soft tissue after implantation of a calcium phosphate-mullite ceramic composite in a rabbit animal model

机译:用X射线微荧光研究在兔动物模型中植入磷酸钙-莫来石陶瓷复合材料后,Al,Si,P和Ca离子在周围软组织中的分布

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摘要

Synthetic calcium phosphates, despite their bioactivity, are brittle. Calcium phosphate- mullite composites have been suggested as potential dental and bone replacement materials which exhibit increased toughness. Aluminium, present in mullite, has however been linked to bone demineralisation and neurotoxicity: it is therefore important to characterise the materials fully in order to understand their in vivo behaviour. The present work reports the compositional mapping of the interfacial region of a calcium phosphate-20 wt% mullite biocomposite/soft tissue interface, obtained from the samples implanted into the long bones of healthy rabbits according to standard protocols (ISO-10993) for up to 12 weeks. X-ray micro-fluorescence was used to map simultaneously the distribution of Al, P, Si and Ca across the ceramic-soft tissue interface. A well defined and sharp interface region was present between the ceramic and the surrounding soft tissue for each time period examined. The concentration of Al in the surrounding tissue was found to fall by two orders of magnitude, to the background level, within ~ 35 μm of the implanted ceramic.
机译:合成磷酸钙尽管具有生物活性,但还是很脆的。有人建议将磷酸钙-莫来石复合材料作为具有增强韧性的潜在牙齿和骨骼替代材料。然而,莫来石中存在的铝与骨骼脱矿质和神经毒性有关:因此,重要的是对材料进行充分表征,以了解其体内行为。本工作报告了根据标准方案(ISO-10993)从植入健康兔子长骨的样品中获得的磷酸钙20 wt%莫来石生物复合材料/软组织界面的界面区域的组成图,直至12周X射线微荧光用于同时绘制Al-P,Si和Ca在陶瓷-软组织界面上的分布图。在每个检查的时间段内,在陶瓷和周围的软组织之间都存在一个定义明确且清晰的界面区域。发现周围组织中的Al浓度下降了两个数量级,降至背景水平,在植入陶瓷的约35μm以内。

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  • 来源
    《Journal of materials science》 |2011年第11期|p.2537-2543|共7页
  • 作者单位

    School of Engineering & Applied Sciences and Aston Research Centre for Healthy Ageing, University of Aston, Aston Triangle, Birmingham B4 7ET, UK;

    Department of Metallurgy and Materials, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK;

    Laboratory for Biomaterials, Department of Materials Science and Engineering, Indian Institute of Technology, Kanpur, Uttar Pradesh, India;

    Laboratory for Biomaterials, Department of Materials Science and Engineering, Indian Institute of Technology, Kanpur, Uttar Pradesh, India;

    Division of Implant Biology, BMT Wing, Sree Chitra Tirunal Institute for Medical Science and Technology, Trivandrum, Kerala, India;

    School of Physical Sciences, University of Kent, Canterbury, Kent CT2 7NH, UK;

    Synchrotron Soleil, L'Orme des Merisiers, BP 48, 91192 Gif/Yvette, France;

    Synchrotron Soleil, L'Orme des Merisiers, BP 48, 91192 Gif/Yvette, France;

    Department of Metallurgy and Materials, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK;

    Laboratory for Biomaterials, Department of Materials Science and Engineering, Indian Institute of Technology, Kanpur, Uttar Pradesh, India;

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