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Thermal and dynamic mechanical behavior of poly(lactic acid) (PLA)-based electrospun scaffolds for tissue engineering

机译:用于组织工程的聚乳酸(PLA)基静电纺丝支架的热和动态力学行为

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摘要

Electrospun scaffolds can find numerous applications, including biomedical; for example, tissue engineering. Poly-L-lactic acid is considered suitable for these applications, but its low-thermal stability and its poor mechanical properties limit this polymer use. The aim of this work is to obtain a modulation of the final scaffolds characteristics such as fibers dimension, wettability, elasticity, and resistance to rupture through the choice of the polymers to be electrospun. Different electrospun scaffolds containing gelatin, Poly-DL-lactic acid, different percentages of cellulose nanocrystals and an elastin peptide have been produced. Thermal stability, physical structure, and its mechanical behavior have been studied. Results suggest that the electrospun scaffolds show better thermal and mechanical properties than bulk materials; that is, the scaffolds with the best hydrophilic and thermomechanical properties are the samples containing 3 (wt/wt) of CNCs and elastin peptide.
机译:静电纺丝支架可以找到许多应用,包括生物医学;例如,组织工程。聚-L-乳酸被认为适用于这些应用,但其低热稳定性和较差的机械性能限制了这种聚合物的使用。这项工作的目的是通过选择要静电纺丝的聚合物来获得最终支架特性的调节,例如纤维尺寸、润湿性、弹性和抗断裂性。已经生产了含有明胶、聚DL-乳酸、不同百分比的纤维素纳米晶体和弹性蛋白肽的不同静电纺丝支架。已经研究了热稳定性、物理结构及其机械行为。结果表明,静电纺丝支架比块状材料表现出更好的热性能和力学性能;也就是说,具有最佳亲水性和热机械性能的支架是含有3%(wt/wt)CNCs和弹性蛋白肽的样品。

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