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首页> 外文期刊>Biomaterials >Osteoblast response to dimethacrylate composites varying in composition, conversion and roughness using a combinatorial approach.
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Osteoblast response to dimethacrylate composites varying in composition, conversion and roughness using a combinatorial approach.

机译:成骨细胞对二甲基丙烯酸酯复合材料的反应,其组成,转化率和粗糙度采用组合方法变化。

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Dimethacrylate polymers and composites are seeing increased usage in orthopedics. As these applications require the material to integrate with the surrounding tissues, direct contact cytotoxicity assays should be used to assess the biocompatibility. This study utilized a combinatorial testing platform to evaluate the cell response to dimethacrylate composites with a variety of properties on a single sample. MC3T3-E1 pre-osteoblasts were cultured directly on composites with varying filler content, filler type, degree of conversion (DC), and surface topography. Cell viability, density, and area depended on an interplay of the material properties, with low DC causing a reduction in cell area but having minimal effect on cell viability, high filler content causing an increase in cell density, and filler content/type altering the surface roughness as a function of DC. The combinatorial testing platform successfully quantified the effects of numerous material properties on several aspects of the osteoblast response.
机译:二甲基丙烯酸酯聚合物和复合材料在整形外科中的使用正在增加。由于这些应用需要材料与周围组织整合,因此应使用直接接触细胞毒性测定法评估生物相容性。这项研究利用组合测试平台来评估细胞对单一样品具有多种特性的二甲基丙烯酸酯复合材料的反应。 MC3T3-E1前成骨细胞直接在具有不同填料含量,填料类型,转化度(DC)和表面形貌的复合材料上培养。细胞活力,密度和面积取决于材料特性的相互作用,低直流电会导致细胞面积减少,但对细胞活力的影响却很小,高填料含量会导致细胞密度增加,填料含量/类型会改变表面粗糙度与直流电的关系。组合测试平台成功量化了多种材料特性对成骨细胞反应多个方面的影响。

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