静电纺丝参数对PLGA纳米纤维直径和形貌的影响。

Lohitha Kalluri, Megha Satpathy, Yuanyuan Duan
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引用次数: 4

摘要

背景:聚乳酸-羟基乙酸(PLGA)在颅面骨再生、伤口敷料和组织工程等生物医学领域的应用得到了广泛的研究。静电纺丝是一种多用途的技术,用于生产具有大比表面积和高孔隙率的微/纳米级纤维。目的:本研究的目的是利用静电纺丝技术制备PLGA纳米纤维用于引导组织再生/引导骨再生。本研究的目的是确定制备PLGA纤维膜适宜的静电纺丝参数,如施加电压、流速、喷丝器-集电极距离和聚合物溶液浓度,以及它们对静电纺丝纤维平均纤维直径的影响。方法:将PLGA微球在不同浓度的六氟异丙醇(HFIP)中溶解过夜。然后将得到的PLGA溶液装入注射器中,在保持其他参数不变的情况下进行静电纺丝。同样,通过改变特定的静电纺丝参数输入,如施加电压、流量和喷丝器-收集器距离,可以收集到各种纤维垫。利用扫描电镜对纤维垫的形貌进行了表征。使用ImageJ软件评估平均纤维直径,并使用单因素方差分析对结果进行比较。结果:在不同的溶液浓度下,我们得到了无珠的均匀纤维。单因素方差分析表明,施加电压、溶液浓度、流速和喷丝器-收集器距离对静电纺纤维的平均纤维直径有显著影响。结论:静电纺丝参数和溶液浓度影响静电纺丝PLGA纳米纤维的平均纤维直径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of Electrospinning Parameters on the Fiber Diameter and Morphology of PLGA Nanofibers.

Effect of Electrospinning Parameters on the Fiber Diameter and Morphology of PLGA Nanofibers.

Effect of Electrospinning Parameters on the Fiber Diameter and Morphology of PLGA Nanofibers.

Effect of Electrospinning Parameters on the Fiber Diameter and Morphology of PLGA Nanofibers.

Background: Poly lactic-co-glycolic acid (PLGA) has been widely investigated for various biomedical applications, such as craniofacial bone regeneration, wound dressing and tissue engineering. Electrospinning is a versatile technology used to produce micro/nanoscale fibers with large specific surface area and high porosity.

Purpose: The aim of the current study is to prepare PLGA nanofibers using electrospinning for guided tissue regeneration/guided bone regeneration applications. The objective of this study is to determine the appropriate electrospinning parameters such as applied voltage, flow rate, spinneret-collector distance and polymer solution concentration for preparation of PLGA fibrous membrane and their effect on the mean fiber diameter of the electrospun fibers.

Method: PLGA pellets were dissolved in Hexafluoroisopropanol (HFIP) in various concentrations overnight using a bench rocker. The resulting PLGA solution was then loaded into a syringe and electrospinning was done by maintaining the other parameters constant. Similarly, various fibrous mats were collected by altering the specific electrospinning parameter inputs such as applied voltage, flow rate and spinneret-collector distance. The morphology of the fibrous mats was characterized using Scanning Electron Microscope. The mean fiber diameter was assessed using ImageJ software and the results were compared using one-way ANOVA.

Results: We obtained bead-free uniform fibers with various tested solution concentrations. One-way ANOVA analysis demonstrated significant variation in mean fiber diameter of the electrospun fibers with altering applied voltage, solution concentration, flow rate and spinneret-collector distance.

Conclusion: The above-mentioned electrospinning parameters and solution concentration influence the mean fiber diameter of electrospun PLGA nanofibers.

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