首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A study on the influence of biocompatible composites with bioactive ligands toward their effect on cell adhesion and growth for the application in bone tissue engineering.
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A study on the influence of biocompatible composites with bioactive ligands toward their effect on cell adhesion and growth for the application in bone tissue engineering.

机译:具有生物活性配体的生物相容性复合材料对其对细胞粘附和生长的影响的研究,用于骨组织工程。

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The aim of this study was the transformation of the macroporous zirconium dioxide ceramic Sponceram into a biomimetic composite material. To enhance the adhesion of cells and to induce their differentiation into osteoblasts poly-L-lysine and BMP-2 were coupled to polymers and copolymers based on 2-deoxy-N-methacrylamido-D-glucose (ox.p(MAG) and p(MVA)) used as spacer, which were adsorbed onto the ceramic surface. The development of the composite materials was validated step by step qualitatively and quantitatively. The bioactive potential of the composite materials was tested under static and dynamic conditions using an osteoblastic model cell line and human mesenchymal stem cells. Both composite materials showed potential to enhance the adhesion of cells in the first 10 days of their cultivation. One of the composite materials, namely Sponceram/ox.p(MAG)-BMP-2, was tested into a rotating-bed bioreactor with regard to its osteogenic differentiation-inducing potential. Compared with Sponceram modified with BMP-2 without a polymer spacer, it showed increased expression of osteogenic markers determined by PCR analysis. In summary, the in vitro testing of the developed composite materials demonstrated a promising potential for their application as biomimetic scaffold materials with controllable properties.
机译:这项研究的目的是将大孔二氧化锆陶瓷海绵陶瓷转变为仿生复合材料。为了增强细胞的粘附力并诱导其分化为成骨细胞,将聚-L-赖氨酸和BMP-2与基于2-脱氧-N-甲基丙烯酰胺基-D-葡萄糖(ox.p(MAG)和p (MVA))用作垫片,并吸附到陶瓷表面上。复合材料的开发得到了定性和定量的逐步验证。使用成骨细胞模型细胞系和人间充质干细胞,在静态和动态条件下测试了复合材料的生物活性潜力。两种复合材料在培养的前10天都显示出增强细胞粘附力的潜力。就其成骨分化诱导潜力而言,将一种复合材料,即Sponceram / ox.p(MAG)-BMP-2,测试到旋转床生物反应器中。与没有聚合物间隔子的BMP-2修饰的Sponceram相比,它显示了通过PCR分析确定的成骨标记物表达的增加。总之,开发的复合材料的体外测试证明了其作为具有可控性能的仿生支架材料的应用前景广阔。

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