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液晶状态下三维复合聚氨酯支架的构建与生物相容性。

Construction and Biocompatibility of Three-Dimensional Composite Polyurethane Scaffolds in Liquid Crystal State.

机构信息

Biomaterial Research Laboratory, Department of Material Science and Engineering, College of Chemistry and Materials, Jinan University, Guangzhou 510632, P. R. China.

Engineering Research Center of Artificial Organs and Materials, Ministry of Education, Guangzhou 510632, P. R. China.

出版信息

ACS Biomater Sci Eng. 2020 Apr 13;6(4):2312-2322. doi: 10.1021/acsbiomaterials.9b01838. Epub 2020 Mar 5.

Abstract

Liquid crystal (LC), a characteristic substance of biofilms, has been reported to positively affect cell affinity. To better combine and utilize the properties of an LC and the advantages of polyurethane (PU) elastomers, the three-dimensional printing (3DP) molding technology and the simple soaking-swelling blending technology were used to construct PU/LC 3D composite scaffolds, and the compressive strength, porosity, hydrophilicity, and in vitro cell experiments of the scaffolds were initially discussed. The results indicated that the newly developed PU/LC 3D composite scaffolds exhibited an LC state; the addition of an LC did not change the porosity after swelling while maintaining a high porosity; the compressive strength of the composite scaffolds decreased while still maintaining high mechanical properties and enhancing hydrophilicity. At the same time, it could improve the cell affinity on the surface of the material, which was beneficial to increase the cell adhesion rate and cell activity, promote the osteogenic differentiation of human mesenchymal stem cells grown on the materials, and improve the alkaline phosphatase activity, calcium nodules, and the expression of related osteogenic genes and proteins. These results demonstrated potential applications of PU/LC composite scaffolds in repairing or regeneration of bone tissue engineering.

摘要

液晶(LC)是生物膜的特征物质,已被报道能积极影响细胞亲和力。为了更好地结合 LC 和聚氨酯(PU)弹性体的特性和优势,采用三维打印(3DP)成型技术和简单的浸泡-溶胀共混技术构建了 PU/LC 3D 复合支架,并初步探讨了支架的压缩强度、孔隙率、亲水性和体外细胞实验。结果表明,新开发的 PU/LC 3D 复合支架呈现出 LC 状态;加入 LC 后,在保持高孔隙率的同时,溶胀后的孔隙率没有改变;复合支架的压缩强度降低,但仍保持较高的机械性能和增强的亲水性。同时,它可以提高材料表面的细胞亲和力,有利于提高细胞黏附率和细胞活性,促进在材料上生长的人骨髓间充质干细胞的成骨分化,并提高碱性磷酸酶活性、钙结节以及相关成骨基因和蛋白的表达。这些结果表明,PU/LC 复合支架在骨组织工程修复或再生方面具有潜在的应用前景。

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