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Biomaterial of chitosan and hydroxyapatite (cnhap) for bone fill and process for production of the same

机译:用于骨填充的壳聚糖和羟基磷灰石(cnhap)的生物材料及其生产方法

摘要

Biomaterial of chitosan and hydroxyapatite (cnhap) for bone fill and process for production of the same process for obtaining the scaffold of a biomaterial hydrogel composite (cnhap) based on chitosan (CN) and hydroxyapatite (HA), with great potential for application in the medical field - Dental care, demonstrating the characteristics of biocompatibility tests evidenced by classical in vitro.These characteristics are associated with the combination of propriedadesfu00edsico chemical and biological materials that compose it. Cnhap was obtained in the form of hydrogel with good mechanical properties, easy handling and modeling, with high porosity, which makes it a promising as materia L of bone fill.The production of scaffold cnhap hydrogel composite was efetuadapor a procedure of mineralization u00ed n situ hydrogel polymeric of LUS per ha. This method of mineralization in situ promoted the mechanical characteristics and bioactivity of the cnhap, suitable for application in medical services.In addition to the biocompatibility, materials for filling tissue should be able to promote adhesion, proliferation, and cell differentiation, essential requirements for bioengineered tissues, which is being increasingly exploited in clinical practice.
机译:用于骨填充的壳聚糖和羟基磷灰石(cnhap)的生物材料以及制备基于壳聚糖(CN)和羟基磷灰石(HA)的生物材料水凝胶复合材料(cnhap)的支架的制备方法相同的方法,具有巨大的应用潜力医学领域-牙科保健,展现出经典体外证明的生物相容性测试的特征。这些特征与构成其的化学和生物材料的组合有关。 Cnhap以水凝胶的形式获得,具有良好的机械性能,易于处理和建模,具有高孔隙率,这使其有望成为骨填充材料。脚手架cnhap水凝胶复合材料的生产是矿化的一种方法。每公顷LUS的原位水凝胶聚合物。这种原位矿化方法促进了樟子松的机械特性和生物活性,适用于医疗服务。除生物相容性外,填充组织的材料还应能够促进粘附,增殖和细胞分化,这是生物工程的基本要求组织,在临床实践中越来越多地被利用。

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