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Biomimetic coating of starch based polymeric foams produced by a calcium silicate based methodology

机译:基于硅酸钙的方法产生的淀粉基聚合物泡沫的仿真涂层

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This work proposes a new methodology to produce bioactive coatings on the surface of starch based or other degradable polymeric biomaterials. A calcium silicate pre-coating is employed as an alternative nucleating agent to the more typical bioactive glasses, for inducing the formation of a calcium-phosphate (Ca-P) layer. The method has the advantage of being able to coat porous 3D architectures to be used on tissue replacement and as tissue engineering scaffolds. By using this treatment, only after 12 hours of SBF immersion, it is already possible to observe the formation of very cohesive apatite-like layers, clearing covering the cell walls of the pores in the porous structures. Mter 7 days of SBF immersion, the apatite-like layers exhibit a partially amorphous nature approaching that of a bone-like apatite structure. These results are very promising for the development of pre-mineralized bone tissue engineering scaffolds. The present methodology can be used to coat biodegradable polymers in spite of all the correspondent difficulties arising from the continuous pH and surface changes as function of time.
机译:该工作提出了一种新方法,在淀粉基或其他可降解的聚合物生物材料表面上产生生物活性涂层。硅酸钙预涂层用作更典型的生物活性玻璃的替代成核剂,以诱导钙磷酸钙(Ca-P)层的形成。该方法具有能够涂覆多孔3D架构以用于组织更换和组织工程支架。通过使用该处理,仅在12小时的SBF浸渍后,已经可以观察到非常粘性的磷灰石状层的形成,清除覆盖多孔结构中孔的细胞壁。 SBF浸没的7天,磷灰石状层表现出骨状磷灰石结构的部分无定形性质。这些结果对于开发矿化前骨组织工程支架的发展非常有前途。目前的方法可用于涂覆可生物降解的聚合物,尽管是从连续pH和表面变化的所有相应的困难,以及时间的变化。

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