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Preparation and cell affinity of microtubular orientation-structured PLGA(70/30) blood vessel scaffold.

机译:微管定向结构的PLGA(70/30)血管支架的制备及其细胞亲和力。

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In this study, a kind of microtubular orientation-structured blood vessel mimicking natural structure was fabricated with poly(lactide-co-glycolide)(70/30) (PLGA(70/30)) solutions in 1,4-dioxane by an improved thermal-induced phase separation (TIPS) technique. The effect of main factors of the TIPS technique, such as environmental temperature, temperature gradient and concentration of the polymer solution on the structure and morphology of formed vessel scaffold was investigated. It was observed that the outer-wall of the scaffold became thick obviously and the microtubules neighboring the outer-wall became disordered with environmental temperature increasing. The diameter of microtubules of vessel scaffolds reduced with temperature gradient increasing or concentration of the polymer solution increasing. By controlling parameters of the TIPS, the scaffolds with various morphologies could be manufactured, which had different diameters of microtubules. On the other hand, inner-diameter and outer-diameterof the vessel scaffolds could be controlled by adjusting size of the polyethylene mould. Cell affinity of the scaffolds was tested in vitro by using A10 cell as model cells. Results showed that the cells grew well in the vessel scaffolds which were modified by ammonia plasma treatment and then anchored with collagen. The cells could array along the direction of the microtubules.
机译:本研究采用改进的聚丙交酯-乙交酯共聚物(70/30)(PLGA(70/30))溶液在1,4-二恶烷溶液中制备了一种模仿自然结构的微管定向结构血管。热致相分离(TIPS)技术。研究了TIPS技术的主要因素,如环境温度,温度梯度和聚合物溶液的浓度对所形成的血管支架的结构和形态的影响。观察到,随着环境温度的升高,支架的外壁明显变厚并且与外壁相邻的微管变得无序。容器支架的微管直径随温度梯度的增加或聚合物溶液浓度的增加而减小。通过控制TIPS的参数,可以制造具有不同形态的支架,其具有不同直径的微管。另一方面,可以通过调节聚乙烯模具的尺寸来控制血管支架的内径和外径。通过使用A10细胞作为模型细胞在体外测试支架的细胞亲和力。结果表明,该细胞在血管支架中生长良好,该支架经氨等离子体处理后被胶原蛋白锚定。细胞可以沿着微管的方向排列。

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