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Determining the Properties of Aligned PLLA and PLGA Electrospun Fiber for neuronal growth

机译:确定对准PLLA和PLGA电纺纤维进行神经元生长的性能

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Poly(L-lactide) PLLA, and its copolymer, poly(lactide-co-glycolide) PLGA, aligned nanocomposite fibers with diameters in the nano-to micrometer size scale are successfully prepared using the electrospinning technique. Fibers were spun using HFIP (hexafluoro-2- propanol) solution, and with different material parameters and working conditions. The f iber quality is evaluated using scanning electron microscopy, judging by the size, uniform ity, and appearance of defects/beads. A significant improvement of fiber appearance is fo und by addition of 1.0% multi-walled carbon nanotubes (MWCNT) into the solution, resulting in decreased fiber diamet er and improved uniformity. The fibers were cold crystallized at 120 °C and compared to their as-spun counterparts. The influence of the crystalline phase and/or MWCNT addition were examined using fiber shrinkage, temperature modulated differential scanning calorimetry, and wide angle X- ray diffraction and dynamic mechanical analysis. Also, we used the electrospun fibers as substrates to influence the growth of cortical neurons. We will report on the impact of M WCNTs to influence how the neuronal growth cone is directed, and dependent upon proc essing factors, for both PLLA and PLGA electrospun fiber nanocomosites.
机译:使用静电纺丝技术成功地制备聚(L-丙交酯)PLLA及其共聚物聚(丙交酯 - 共乙酰基)PLGA,在纳米至千分尺尺寸尺度中具有直径的对准纳米复合纤维。使用HFIP(六氟-2-丙醇)溶液和不同的材料参数和工作条件旋转纤维。使用扫描电子显微镜进行评估FIBER质量,判断尺寸,均匀的Ity和缺陷/珠子的外观。通过将1.0%的多壁碳纳米管(MWCNT)加入溶液中,纤维外观的显着改善是缺陷,导致纤维径向均降低和改善均匀性。将纤维在120℃下冷却,并与它们的纺丝对应物进行比较。使用纤维收缩,温度调制差示扫描量热法和广角X射线衍射和动态力学分析检查结晶相和/或MWCNT添加的影响。此外,我们使用电纺纤维作为基质以影响皮质神经元的生长。我们将报告M WCNTS的影响,影响神经元生长锥如何指导,并且依赖于PRLA和PLGA Electurpum纤维纳米料的Proc Essing因素。

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