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Fabrication of pillared PLGA microvessel scaffold using femtosecond laser ablation

机译:Fabrication of pillared pLGa microvessel scaffold using femtosecond laser ablation

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摘要

One of the persistent challenges confronting tissue engineering is the lack of intrinsic microvessels for the transportation of nutrients and metabolites. An artificial microvascular system could be a feasible solution to this problem. In this study, the femtosecond laser ablation technique was implemented for the fabrication of pillared microvessel scaffolds of polylactic-co-glycolic acid (PLGA). This novel scaffold facilitates implementation of the conventional cell seeding process. The progress of cell growth can be observed in vitro by optical microscopy. The problems of becoming milky or completely opaque with the conventional PLGA scaffold after cell seeding can be resolved. In this study, PLGA microvessel scaffolds consisting of 47 mu m x 80 mu m pillared branches were produced. Results of cell culturing of bovine endothelial cells demonstrate that the cells adhere well and grow to surround each branch of the proposed pillared microvessel networks.
机译:组织工程面临的持续挑战之一是缺乏用于营养和代谢物运输的内在微血管。人造微血管系统可能是解决该问题的可行方案。在这项研究中,飞秒激光烧蚀技术被用于制造聚乳酸-乙醇酸(PLGA)的带柱微血管支架。这种新颖的支架促进了常规细胞接种过程的实施。可以通过光学显微镜在体外观察细胞生长的进程。可以解决细胞接种后常规PLGA支架变成乳白色或完全不透明的问题。在这项研究中,PLGA微血管支架由47微米x 80微米的柱状分支组成。牛内皮细胞的细胞培养结果表明,该细胞粘附良好并生长以包围提出的有柱微血管网络的每个分支。

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