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首页> 外文期刊>Biomaterials >Rapid prototyping of scaffolds derived from thermoreversible hydrogels and tailored for applications in tissue engineering.
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Rapid prototyping of scaffolds derived from thermoreversible hydrogels and tailored for applications in tissue engineering.

机译:从热可逆水凝胶衍生而来的支架的快速原型设计,适合组织工程应用。

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In the year 2000 a new rapid prototyping (RP) technology was developed at the Freiburg Materials Research Center to meet the demands for desktop fabrication of scaffolds useful in tissue engineering. A key feature of this RP technology is the three-dimensional (3D) dispensing of liquids and pastes in liquid media. In contrast to conventional RP systems, mainly focused on melt processing, the 3D dispensing RP process (3D plotting) can apply a much larger variety of synthetic as well as natural materials, including aqueous solutions and pastes, to fabricate scaffolds for application in tissue engineering. For the first time, hydrogel scaffolds with a designed external shape and a well-defined internal pore structure were prepared by this RP process. Surface coating and pore formation were achieved to facilitate cell adhesion and cell growth. The versatile application potential of new hydrogel scaffolds was demonstrated in cell culture.
机译:在2000年,弗赖堡材料研究中心开发了一种新的快速原型(RP)技术,以满足台式制造在组织工程中有用的支架的需求。这项RP技术的关键特征是在液体介质中对液体和糊剂进行三维(3D)分配。与主要专注于熔体加工的常规RP系统相比,3D点胶RP工艺(3D绘图)可以应用种类繁多的合成及天然材料(包括水溶液和糊剂)来制造用于组织工程的支架。通过该RP方法首次制备了具有设计外形和明确内部孔结构的水凝胶支架。实现了表面涂覆和孔形成以促进细胞粘附和细胞生长。在细胞培养中证明了新型水凝胶支架的多功能应用潜力。

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