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Stereolithography of Three-Dimensional Bioactive Poly(Ethylene Glycol) Constructs with Encapsulated Cells

机译:具有封装细胞的三维生物活性聚(乙二醇)构建体的立体光刻

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摘要

Stereolithography (SL) was used to fabricate complex 3-D poly(ethylene glycol) (PEG) hydrogels. Photopolymerization experiments were performed to characterize the solutions for use in SL, where the crosslinked depth (or hydrogel thickness) was measured at different laser energies and photoinitiator (PI) concentrations for two concentrations of PEG-dimethacrylate in solution (20% and 30% (w/v)). Hydrogel thickness was a strong function of PEG concentration, PI type and concentration, and energy dosage, and these results were utilized to successfully fabricate complex hydrogel structures using SL, including structures with internal channels of various orientations and multi-material structures. Additionally, human dermal fibroblasts were encapsulated in bioactive PEG photocrosslinked in SL. Cell viability was at least 87% at 2 and 24 h following fabrication. The results presented here indicate that the use of SL and photocrosslinkable biomaterials, such as photocrosslinkable PEG, appears feasible for fabricating complex bioactive scaffolds with living cells for a variety of important tissue engineering applications.
机译:立体光刻(SL)用于制造复杂的3-D聚乙二醇(PEG)水凝胶。进行了光聚合实验以表征用于SL的溶液,其中在溶液中两种浓度的PEG-二甲基丙烯酸酯(20%和30%( w / v))。水凝胶厚度是PEG浓度,PI类型和浓度以及能量剂量的强函数,这些结果被用来成功地使用SL制备复杂的水凝胶结构,包括具有不同方向的内部通道和多种材料结构的结构。另外,将人皮肤成纤维细胞封装在SL中光交联的生物活性PEG中。在制造后2小时和24小时,细胞生存力至少为87%。此处呈现的结果表明,SL和可光交联的生物材料(例如可光交联的PEG)的使用对于制造具有活细胞的复杂生物活性支架对于各种重要的组织工程应用而言似乎是可行的。

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