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In situ synthesis of calcium phosphate-polycaprolactone nanocomposites with high ceramic volume fractions

机译:高陶瓷体积分数的磷酸钙-聚己内酯纳米复合材料的原位合成

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摘要

Biodegradable calcium phosphate-PCL nano-composite powders with unusually high ceramic volume fractions (80-95%) and uniform PCL distribution were synthesized by a non-aqueous chemical reaction in the presence of the dissolved polymer. No visible polymer separation occurred during processing. Depending on the reagents combination, either dicalcium phosphate (DCP) or Ca-deficient HA (CDHA) was obtained. CDHA-PCL composite powders were high pressure consolidated at room temperature yielding dense materials with high compressive strengths. Such densification route provides the possibility of incorporating drug and proteins without damaging their biological activity. The CDHA-PCL composites were tested in osteoblastic and endothelial cell line cultures and were found to support the attachment and proliferation of both cell types.
机译:在溶解的聚合物存在下,通过非水化学反应合成了具有异常高的陶瓷体积分数(80-95%)和均匀的PCL分布的可生物降解的磷酸钙-PCL纳米复合粉末。在加工过程中没有可见的聚合物分离发生。根据试剂的组合,可以获得磷酸二钙(DCP)或缺钙的HA(CDHA)。 CDHA-PCL复合粉末在室温下高压固结,得到具有高抗压强度的致密材料。这种致密化途径提供了掺入药物和蛋白质而不损害其生物学活性的可能性。在成骨细胞和内皮细胞系培养物中测试了CDHA-PCL复合材料,发现它们可支持两种细胞类型的附着和增殖。

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  • 来源
    《Journal of materials science》 |2010年第6期|P.1771-1779|共9页
  • 作者单位

    Faculty of Materials Engineering, Technion-IIT, Haifa, Israel;

    rnFaculty of Materials Engineering, Technion-IIT, Haifa, Israel;

    rnInstitute of Pathology, Universitaetsmedizin der Johannes Gutenberg-Universitaet, Langenbeckstrasse 1, Mainz, Germany;

    rnInstitute of Pathology, Universitaetsmedizin der Johannes Gutenberg-Universitaet, Langenbeckstrasse 1, Mainz, Germany;

    rnInstitute of Pathology, Universitaetsmedizin der Johannes Gutenberg-Universitaet, Langenbeckstrasse 1, Mainz, Germany;

    rnFaculty of Materials Engineering, Technion-IIT, Haifa, Israel;

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