Hybrid Ceramo-Polymeric Nano-Diamond Composites

A. Apicella, R. Aversa, F. Petrescu
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引用次数: 10

Abstract

This paper discusses a new class of bio-mechanical scaffolds active for tissue engineering based on a nano-diamond-filled hydrophilic polymer matrix. The new biomaterials used have special mechanical and biological properties for which they should be extensively studied for their use for various advanced biomedical applications. The new hybrid material has been prepared using 2 and 5% by volume of detonating nano-diamonds and poly (hydroxy-ethyl-methacrylate) hydrophilic. Both the mechanical and biological properties specific to the nanocomposite are hybrids in nature. The paper presents the analytical procedures of the hybrid material and the preliminary mechanical characterization. This class of hybrid materials has a high potential for biomimetic, osteoconductive and osteoinductive applications as active bio-mechanical bones for increasing osteoblasts and differentiating stem cells. At the same time, these hybrid nano-composites possess a much improved mechanical strength that exceeds the mechanical deficiencies of the hydrogels traditionally used for bone regeneration and can be applied as an osteoinductive coating for metal trabecular scaffolds. Micro-trabecular metal structures coated with active and osteoinductive biomechanical ceramic-polymeric biomechanical scaffolds are proposed to recreate macro and micro-distribution of bone stresses and deformations.
杂化陶瓷-聚合物纳米金刚石复合材料
本文讨论了一类具有组织工程活性的新型生物机械支架材料——纳米金刚石填充亲水聚合物基质。所使用的新型生物材料具有特殊的力学和生物学特性,为了将其用于各种先进的生物医学应用,应该对其进行广泛的研究。采用体积比为2%和5%的纳米金刚石和亲水聚甲基丙烯酸羟乙酯制备了新型杂化材料。纳米复合材料的机械和生物特性本质上都是杂化的。本文介绍了杂化材料的分析方法和初步的力学表征。这类混合材料在仿生、骨传导和骨诱导方面具有很高的应用潜力,可作为活性生物机械骨,用于增加成骨细胞和分化干细胞。同时,这些杂化纳米复合材料具有大大提高的机械强度,超过了传统用于骨再生的水凝胶的机械缺陷,可以作为金属小梁支架的骨诱导涂层。提出了一种包被活性生物力学和骨诱导生物力学陶瓷-聚合物生物力学支架的微金属小梁结构,用于重建骨应力和变形的宏观和微观分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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