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Cellulose phosphates as biomaterials. Mineralization of chemically modified regenerated cellulose hydrogels

机译:磷酸纤维素作为生物材料。化学改性的再生纤维素水凝胶的矿化

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摘要

Femoral implantation of regenerated cellulose hydrogels revealed their biocompatible and osteoconductive properties, but a complete osseointegration could not be observed. Phosphorylation was therefore envisaged as the means to enhance cellulose bioactivity. Once implanted, phosphorylated cellulose could promote the formation of calcium phosphates, having therefore closer resemblance to bone functionality and assuring a satisfactory bonding at the interface between hard tissue and biomaterial. In the present work, regenerated cellulose hydrogels were surface modified via phosphorylation. Phosphorylated materials, having varying degrees of substitution, were soaked in a Simulated Body Fluid (SBF) solution in order to investigate their ability to induce the formation of a calcium phosphate layer. Mineralization was assessed by Scanning Electron Microscopy (SEM), Energy Dispersive Spectroscopy (EDS) and Attenuated Total Reflectance-Fourier Transform Infrared (ATR-FTIR) spectroscopy. It was demonstrated that the calcium salt of cellulose phosphates mineralized at a higher extent than materials only phosphorylated. The degree of phosphorylation influenced the extent of surface mineralization. Moderate degrees of surface phosphorylation promoted the highest extent of mineralization. This was attributed to inadequate functionality of the surface in terms of density of PO4 groups and overall surface charge, in the case of low and high phosphate contents.
机译:再生纤维素水凝胶的股骨植入显示出它们的生物相容性和骨传导特性,但无法观察到完整的骨整合。因此,磷酸化被认为是增强纤维素生物活性的手段。植入后,磷酸化纤维素可促进磷酸钙的形成,因此与骨骼功能更相似,并确保在硬组织和生物材料之间的界面处具有令人满意的结合。在本工作中,再生的纤维素水凝胶通过磷酸化进行了表面改性。将具有不同取代度的磷酸化材料浸泡在模拟体液(SBF)溶液中,以研究其诱导磷酸钙层形成的能力。矿化作用通过扫描电子显微镜(SEM),能量色散光谱(EDS)和衰减全反射傅里叶变换红外(ATR-FTIR)光谱进行评估。已证明,与仅磷酸化的材料相比,磷酸纤维素的钙盐矿化程度更高。磷酸化程度影响表面矿化的程度。中等程度的表面磷酸化促进了最大程度的矿化。这归因于在低和高磷酸盐含量的情况下,就PO4 基团的密度和总表面电荷而言,表面功能不足。

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  • 来源
    《Journal of Materials Science》 |2001年第9期|2163-2172|共10页
  • 作者单位

    INEB - Instituto de Engenharia Biomédica Laboratório de BiomateriaisFaculdade de Engenharia Dept. Engenharia Metalúrgica e de Materiais Universidade do Porto;

    INEB - Instituto de Engenharia Biomédica Laboratório de BiomateriaisFaculdade de Engenharia Dept. Engenharia Metalúrgica e de Materiais Universidade do Porto;

    INSTITUT DU PIN Laboratoire de Chimie des Substances Végétales (LCSV) Université Bordeaux;

    INSTITUT DU PIN Laboratoire de Chimie des Substances Végétales (LCSV) Université Bordeaux;

    INSERM U.443 Université;

    INSERM U.443 Université;

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