首页> 外文OA文献 >Fabrication And Characterization Of Calcium Phosphate Cement Foams: Evaluation Of Emulsion And Gelcasting Methods [obtenção E Caracterização De Espumas De Cimento De Fosfato De Cálcio: Avaliação Dos Métodos De Emulsão E Gelcasting]
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Fabrication And Characterization Of Calcium Phosphate Cement Foams: Evaluation Of Emulsion And Gelcasting Methods [obtenção E Caracterização De Espumas De Cimento De Fosfato De Cálcio: Avaliação Dos Métodos De Emulsão E Gelcasting]

机译:磷酸钙水泥泡沫的制备与表征:乳液和凝胶浇铸方法的评价

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摘要

In Tissue Engineering, the need for scaffolds which are capable of guiding the organization, differentiation and growth of cells leading to the formation of new tissues is highly relevant. For the development of new scaffolds focused on bone tissue therapy, calcium phosphate cements (CPC) have great potential, because besides their resorbability, they present morphology and chemical composition similar to the bone mineral phase. Moreover, there are several processing techniques to produce ceramic scaffolds: polymeric sponge replication, incorporation of organic material into the ceramic powder, gelcasting, emulsion, among others. The aim of this work was to obtain CPCs foams by using two processing routes, emulsion and gelcasting. The foams were characterized by their physical and mechanical properties and the crystalline phases formed after the setting reaction of cement were determined by X-ray diffraction. The samples obtained by both methods presented porosity between 58-62% and the microstructure consists of nearly spherical pores (d50 = 50-100 μm). The mechanical strength of the samples ranged from 5.5 to 1.5 MPa. The crystalline phases found were monetite (CaHPO4) and brushite (CaHPO4 2H2O).
机译:在组织工程学中,高度需要能够指导细胞的组织,分化和生长以导致新组织形成的支架。对于专注于骨组织治疗的新型支架的开发,磷酸钙水泥(CPC)具有巨大的潜力,因为除了其可吸收性外,它们还具有类似于骨矿物质相的形态和化学组成。此外,存在几种生产陶瓷支架的加工技术:聚合海绵复制,将有机材料掺入陶瓷粉末中,凝胶浇铸,乳液等。这项工作的目的是通过乳液和凝胶浇铸这两种加工途径获得CPC泡沫。通过泡沫塑料的物理和机械特性对其进行表征,并通过X射线衍射确定在水泥固化反应之后形成的结晶相。通过两种方法获得的样品的孔隙率在58-62%之间,并且微观结构由几乎球形的孔组成(d50 = 50-100μm)。样品的机械强度为5.5至1.5 MPa。发现的结晶相是透钙石(CaHPO4)和透钙磷石(CaHPO4 2H2O)。

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