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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >In Vitro Evaluation of a 3D PLGA-TCP Composite Scaffold in an Experimental Bioreactor
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In Vitro Evaluation of a 3D PLGA-TCP Composite Scaffold in an Experimental Bioreactor

机译:在实验生物反应器中的3D PLGA-TCP复合支架的体外评估

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摘要

A 3D polydactic acid-co-glycolic acid)/tricalcium phosphate (PLGA-TCP) composite scaffold, generated with the low-temperature deposition modeling rapid prototyping technique, was tested for its viability in a 3D cell cultivation in vitro. The aim was to find optimal cell culture conditions for the selected scaffold material and to monitor cell division, differentiation, and migration of selected cell types in this environment. In addition, the behavior and cell-matrix interactions of selected cell types were monitored as well as the biodegradation rate of the tested scaffold material. Chinese hamster ovary cells as well as a human cell line 293 epithelial cells were cultured on the scaffolds. A variety of different preconditioning protocols were deployed to prepare the scaffolds before seeding with the cells. Cell cultivations were conducted for 1-4 weeks and the coverage of the luminal surfaces was analyzed with light microscopy. Long cultivation periods were required to achieve partial coverage of the luminal surfaces of the scaffolds. Tissue engineering with 3D cell cultures and biomaterials represents a promising approach for organ manufacturing research. It may have potential for eventual on-demand high-throughput production of artificial tissues but the process has many challenges. The culture system in a well controlled bioreactpr environment is discussed.
机译:测试了通过低温沉积建模快速原型技术生成的3D聚乳酸-乙醇酸/磷酸三钙(PLGA-TCP)复合支架在体外3D细胞培养中的可行性。目的是为选定的支架材料找到最佳的细胞培养条件,并在此环境中监测选定细胞类型的细胞分裂,分化和迁移。另外,监测所选细胞类型的行为和细胞-基质相互作用以及所测试的支架材料的生物降解率。将中国仓鼠卵巢细胞以及人细胞系293上皮细胞培养在支架上。在接种细胞之前,部署了各种不同的预处理方案来制备支架。细胞培养进行1-4周,并用光学显微镜分析管腔表面的覆盖率。需要较长的培养时间以实现部分覆盖支架的腔表面。具有3D细胞培养物和生物材料的组织工程是器官制造研究的一种有前途的方法。它可能具有最终按需高通量生产人造组织的潜力,但该过程面临许多挑战。讨论了在良好控制的生物反应环境中的培养系统。

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