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Evaluation of Nanofiber PLA Scaffolds Using Dry-and Wet-Electro Spinning Methods

机译:用干燥和湿式纺丝方法评估纳米纤维PLA支架

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Investigating the fabrication of a favorable scaffold is a continuing sconcern and an essential step within tissue engineering. An ideal scaffold should mimic the structure of extracellular matrix (ECM) which has considerable impacts on its function. To meet this demands, in this study, three-dimensional scaffolds by polylactic acid (PLA) polymer 10%, 13%, 15%, 17% and 20% (w/v) with a novel architecture produced by a wet-electrospinning process have been fabricated and compared with dry-electrospun scaffolds that have been developed for tissue engineering applications. In the wet-electrospinning method, an aqueous solution of sodium hydroxide (NaOH) (pH~13) has been used as the coagulation bath instead of the aluminum collector which is used in the dry method. Comparing with usual nanofiber non-woven PLA fabric prepared by a conventional electrospinning method, wet-electrospun spongiform PLA nanofiber scaffolds have low apparent density and high porosity. The porosity of the scaffolds has been examined in this two methods and their mechanical properties as well as their morphology are investigated. All in all, it is shown that the novel nanofiber fabrication system would be amazingly useful for the structure control of the nanofiber fabric.
机译:调查良好的支架的制造是组织工程中的持续的弹道串和基本步骤。理想的脚手架应该模拟细胞外基质(ECM)的结构,这对其功能具有相当大的影响。为了满足这项要求,在本研究中,具有通过生产的新建筑的聚乳酸(PLA)聚合物10 %,13℃,15×%,17 %和20×%(w / v)的三维支架已经制造了湿静电纺丝工艺,并与已开发用于组织工程应用的干式电纺支架进行比较。在湿式静电纺丝方法中,氢氧化钠(NaOH)(pH〜13)的水溶液已被用作凝固浴而不是在干燥方法中使用的铝收集器。与常规静电纺丝法制备的常规纳米纤维无纺布PLA织物相比,湿 - 电纺海绵状PLA纳米纤维支架具有低表观密度和高孔隙率。已经在这两种方法中研究了支架的孔隙率,并研究了它们的机械性能以及它们的形态。总而言之,表明新型纳米纤维制造系统对于纳米纤维织物的结构控制非常有用。

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