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Correlation of Extract Composition on Antioxidant Activity of ELECTROSPUN PolyvinylPyrrolidone/Bassela rubra linn Leaf Extract Composite

机译:萃取物组成对电纺吡咯烷酮/ Bassela Rubra LiNn叶提取物复合材料抗氧化活性的相关性

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Nanofiber through electrospinning process has been developed as a promising material for wound dressing due to its large porosity and high surface area. This characteristic of nanofiber provides an adequate gas permeability surrounding the wound which prevents the healing failure. The best wound dressing not only maintain a wound to have a good gas permeability but also to have an active agent giving an antibacterial and antiinflammation property. This research aims to combine a synthetic polymer and active agent, polyvinylpyrrolidone (PVP) and Bassela rubra linn leaf extract (BRLE), become nanofibrous material. The electrospinning process was conducted in two steps. The first step is to obtain the best voltage of PVP electrospinning by using the voltage of 10, 12, 15, 17 kV. The other step is combining PVP to 2%, 5%, 8% of BRLE. The first step shows the best operation condition is using 12 kV. Hence, it is used to obtain nanofiber with different BRLE percentage. Based on 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay, the result indicates that increase the BRLE composition will rise the antioxidant activity because of the smaller diameter size.
机译:通过静电纺丝过程的纳米纤维是由于其大孔隙率和高表面积而被开发为伤口敷料的有希望的材料。纳米纤维的这种特性提供了围绕伤口的充分渗透性,这防止了愈合失败。最好的伤口敷料不仅保持伤口才能具有良好的透气性,而且还具有抗菌和抗炎性能的活性剂。该研究旨在将合成聚合物和活性剂,聚乙烯吡咯烷酮(PVP)和贝塞拉·rubra LiNn叶子提取物(Brle)结合,成为纳米纤维材料。静电纺丝过程分两步进行。第一步是通过使用10,12,15,17 kV的电压来获得PVP静电纺丝的最佳电压。另一步是将PVP与2%,5%,8%的弯曲组合。第一步示出了最佳的操作条件使用12 kV。因此,它用于获得具有不同弯曲百分比的纳米纤维。基于2,2-二苯基-1-富铬(DPPH)测定,结果表明,由于直径尺寸较小,因此增加弯曲组合物将升高抗氧化活性。

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