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首页> 外文期刊>Journal of materials science >Bisphosphonate incorporation in surgical implant coatings by fast loading and co-precipitation at low drug concentrations
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Bisphosphonate incorporation in surgical implant coatings by fast loading and co-precipitation at low drug concentrations

机译:在低药物浓度下通过快速加载和共沉淀将双膦酸盐并入外科植入物涂层

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摘要

The objectives of the present work was to evaluate the possibility for fast loading by soaking of bis-phosphonates (BPs) into hydroxylapatite (HA) implant coatings biomimetically grown on crystalline TiO_2 surfaces, and also investigate the influence of different BP loading concentrations in a buffer during co-precipitation of a calcium phosphate containing layer onto these surfaces. The co-precipitation method created coatings that contained BPs throughout most of the coating layer, but the presence of BPs in the buffer hindered the formation of a bulk HA-layer, thus resulting in very thin coatings most likely consisting of islands built up by a calcium phosphate containing BPs. The coatings biomimetically grown on TiO_2 surfaces, were shown to consist of crystalline HA. Soaking of these coatings during 15 min only in a low BPs concentration containing buffer yielded a concentration on the coating surface of the same order of magnitude as obtained with soaking during 60 min in significantly higher concentrated buffers. This could be of advantage during surgery since the operating surgeon could make a fast decision whether or not to include the drugs in the coating based on the need of the particular patient at hand. The BPs present on the surface of the fast-loaded HA coatings were found to be strongly bound, something which should be beneficial for in vivo use. Both the co-precipitation method and the fast loading by soaking method investigated here are promising techniques for loading of BPs onto surgical implants. The simplicity of both methods is an advantage since implants can have spatially complicated structures.
机译:本工作的目的是评估通过将双膦酸酯(BPs)浸入仿生在TiO_2晶体表面上生长的羟基磷灰石(HA)植入物涂层中来快速加载的可能性,并研究缓冲液中不同BP加载浓度的影响。在这些表面上共沉淀含磷酸钙层的过程中。共沉淀法产生的涂层在整个涂层的大部分区域都含有BP,但是缓冲液中BP的存在阻碍了大体积HA层的形成,因此形成了非常薄的涂层,最有可能由由碳纳米管形成的岛构成含磷酸钙的BP。在TiO_2表面上仿生生长的涂层显示出由结晶HA组成。仅在含有缓冲剂的低BPs浓度下将这些涂层浸泡15分钟,在涂层表面上产生的浓度与在明显更高浓度的缓冲液中浸泡60分钟所获得的浓度相同。这在手术期间可能是有利的,因为手术的外科医生可以根据手头的特定患者的需要做出快速决定是否在涂层中包括药物的决定。发现存在于快速加载的HA涂层表面的BP是牢固结合的,这对体内使用应该是有益的。本文研究的共沉淀法和通过浸泡的快速加载都是将BP加载到外科植入物上的有前途的技术。两种方法的简单性是一个优点,因为植入物可以具有空间复杂的结构。

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  • 来源
    《Journal of materials science》 |2009年第10期|2053-2061|共9页
  • 作者单位

    Division for Materials Science, Department of Engineering Sciences, The Angstrom Laboratory, Uppsala University,Box 534, 751 21 Uppsala, Sweden;

    Division for Nanotechnology and Functional Materials,Department of Engineering Sciences, The Angstrom Laboratory,Uppsala University, Box 534, 751 21 Uppsala, Sweden;

    Division for Nanotechnology and Functional Materials,Department of Engineering Sciences, The Angstrom Laboratory,Uppsala University, Box 534, 751 21 Uppsala, Sweden;

    Division for Nanotechnology and Functional Materials,Department of Engineering Sciences, The Angstrom Laboratory,Uppsala University, Box 534, 751 21 Uppsala, Sweden;

    Division for Materials Science, Department of Engineering Sciences, The Angstrom Laboratory, Uppsala University,Box 534, 751 21 Uppsala, Sweden;

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