> Delivery systems based on electrospun polymeric nanofibers have shown potential for delivery of bi'/> Chemomechanical and morphological properties with proliferation of keratinocyte cells of electrospun poyhydroxyalkanoate fibers incorporated with essential oil
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Chemomechanical and morphological properties with proliferation of keratinocyte cells of electrospun poyhydroxyalkanoate fibers incorporated with essential oil

机译:掺入精油的电纺Poyhydroxyalate纤维的角质形成细胞增殖的化学力学和形态学性质

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> Delivery systems based on electrospun polymeric nanofibers have shown potential for delivery of bioactive and plant extract formulations. This research focused on the fabrication of polyhydroxyalkanoate (PHA) copolymer nanofibers as a vehicle for loading of the Thai traditional herbal extract of Plai oil ( Zingiber cassumunar Roxb). Nanofibers were formed by dissolving PHA and Plai oil together in dichloromethane solvent, with the PHA concentration being varied (5, 8, and 10%), followed by electrospinning for 4?hours. Based on the submicron diameters of the nanofibers, 8% PHA proved to be the optimal concentration. The concentration of Plai oil (10, 20, and 30%) was used, and hence, the solution viscosity influenced the nanofiber synthesis and physical properties of the nanofibers were obtained. Scanning electron microscope results indicated that the average diameters of cylindrical PHA nanofibers loaded with Plai oil (10%, 20%, and 30%) were 1.10, 1.01, and 1.11?μm, respectively, highlighting that fibers composed of 20% Plai oil were classifiable as nanofibers. Tensile testing of 20% Plai oil‐loaded nanofibers indicated that stiffness and elongation at break were within the acceptable range. Fourier transform infrared and differential scanning calorimetry measurements highlighted the presence of terpenen‐4‐ol, a component found in Plai oil, in the nanofiber film samples of PHA/Plai oil, confirming its inclusion in the systems. In addition, cell proliferation was set up to confirm the morphology and toxicity of skin keratinocyte cell line, and the results show that the HaCaT cells were attached on the PHA nanofibers which the nanofibers containing 20% Plai oil may affect cell behavior in spite the fact that it is not toxic to the cells.
机译: > 基于ElectromeOn聚合物纳米纤维的递送系统显示了生物活性和植物提取物制剂的递送的可能性。本研究专注于制备多羟基烷烃(PHA)共聚物纳米纤维作为换泰国传统草药提取物的载体( Zingiber Cassumunar ROXB)。通过将PHA和PLAI油溶解在二氯甲烷溶剂中形成纳米纤维,用PHA浓度变化(5,8和10%),然后进行电刺4小时。基于纳米纤维的亚微米直径,8%PHA被证明是最佳浓度。使用PLAI油(10,20和30%)的浓度,因此,溶液粘度影响纳米纤维合成,得到纳米纤维的物理性质。扫描电子显微镜结果表明,圆柱形PHA纳米纤维的平均直径分别为1.10,1.01和1.11ΩΩμm,突出显示由20%的Plai油组成的纤维作为纳米纤维进行甲型。 20%普拉载纳米纤维的拉伸试验表明,突破处的刚度和伸长率在可接受的范围内。傅里叶变换红外和差示扫描量热测量测量结果突出了Terpenen-4-OL的存在,在PHA / PLAI油的纳米纤维薄膜样品中存在于PLAI油中的组分,确认其包含在系统中。此外,将细胞增殖设置为确认皮肤角蛋白细胞细胞系的形态和毒性,结果表明,HaCAT细胞连接在PHA纳米纤维上,含有20%PLAI油的纳米纤维可能会影响细胞行为它对细胞没有毒性。

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