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Development of Polymeranoceramic Composite Material with Potential Application in Biomedical Engineering

机译:高分子/纳米复合材料的开发及其在生物医学工程中的潜在应用

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The rise of human life expectancy results in the increasing of elderly population and consequently the diseases of old age, which are mostly related with bone degenerative diseases. These problems also affect young individuals, commonly due to accidents (automobile and work). This fact has stimulated the research and development of materials that can replace or regenerate the damaged bone. From the engineering view, bone is a composite material consisting of an organic matrix (collagen), reinforced by an inorganic component (hydroxyapatite). The search for a suitable material, with properties tailored to the needs of the bone metabolism, as well as the adequate way of material processing, which ensures the maintenance or improvement of their initial properties, motivated this research. In this work was developed composite materials, based on bioresorbable polymer (PLLA) and phosphocalcic nanoceramic (HA). The composites were characterized by scanning electron microscopy (microstructure) and dynamical mechanical analyses (mechanical behavior). The results indicated these materials as promising for applications in the medical and dental manufacturing devices (plates and screws) by injection molding, and also for scaffolds by rapid manufacturing, in the tissue engineering area.
机译:人类预期寿命的增加导致老年人口的增加,并因此导致了老年疾病,这些疾病主要与骨退行性疾病有关。这些问题通常也会由于事故(汽车和工作)而影响年轻人。这一事实刺激了可以替代或再生受损骨骼的材料的研究与开发。从工程的角度来看,骨骼是一种复合材料,由有机基质(胶原蛋白)和无机成分(羟基磷灰石)增强而成。寻找合适的材料,使其具有适合骨骼新陈代谢需求的特性以及适当的材料加工方式,以确保维持或改善其初始特性,从而推动了这项研究。在这项工作中,开发了基于生物可吸收聚合物(PLLA)和磷酸钙纳米陶瓷(HA)的复合材料。通过扫描电子显微镜(微观结构)和动态力学分析(力学行为)对复合材料进行了表征。结果表明,这些材料有望通过注射成型应用于医疗和牙科制造设备(板和螺钉),并有望在组织工程领域通过快速制造应用于支架。

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