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首页> 外文期刊>Nanomedicine >Influence of porosity and pore shape on structural, mechanical and biological properties of poly epsilon-caprolactone electrospun fibrous scaffolds
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Influence of porosity and pore shape on structural, mechanical and biological properties of poly epsilon-caprolactone electrospun fibrous scaffolds

机译:孔隙和孔形对聚ε-己内酯电纺纤维支架结构,力学和生物学性能的影响

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Background: Electro-spun scaffolds are utilized in a diverse spectrum of clinical targets, with an ever-increasing quantity of work progressing to clinical studies and commercialization. The limited number of conformations in which the scaffolds can be fabricated hampers their wide acceptance in clinical practice. Materials & methods: Herein, we assessed a single-strep fabrication process for predesigned electro-spun scaffold preparation and the ramifications of the introduction of porosity (0, 30, 50, 70%) and pore shape (circle, rhomboid, square) on structural, mechanical (tensile and ball burst) and biological (dermal fibroblast and THP-1) properties. Results: The collector design did not affect the fibrous nature of the scaffold. Modulation of the porosity and pore shape offered control over the mechanical properties of the scaffolds. Neither the porosity nor the pore shape affected cellular (dermal fibroblast and THP-1) response. Conclusion: Overall, herein we provide evidence that electrospun scaffolds of controlled architecture can be fabricated with fibrous fidelity, adequate mechanical properties and acceptable cytocompatibility for a diverse range of clinical targets.
机译:背景:电纺支架被用于各种各样的临床目标,并且越来越多的工作进展到临床研究和商业化。可以制造支架的构象的数量有限,妨碍了它们在临床实践中的广泛接受。材料和方法:在本文中,我们评估了用于预设计的电纺脚手架制备的单链制造工艺以及在其上引入孔隙率(0、30、50、70%)和孔形(圆形,菱形,正方形)的后果结构,机械(拉伸和球破裂)和生物学(真皮成纤维细胞和THP-1)特性。结果:收集器的设计没有影响支架的纤维性质。孔隙率和孔形状的调节提供了对支架机械性能的控制。孔隙率和孔隙形状都不会影响细胞(真皮成纤维细胞和THP-1)的反应。结论:总的来说,本文提供了可控制结构的电纺支架的证据,该支架具有纤维保真度,足够的机械性能和可接受的细胞相容性,可用于多种临床靶标。

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