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Wound Dressing Based on Banana Peels Waste and Chitosan by Strengthening Lignin as Wound Healing Medicine

机译:基于香蕉的伤口敷料通过加强木质素作为伤口愈合药物剥离废物和壳聚糖

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Recent studies in new applications of wound dressing offer and promote the process of wound healing.The purpose of this study was to develop lignin-based wound dressing on banana peel and then put it into chitosan fdm for wound dressing applications.The use of banana peels helps the formation of skin compounds so that they can be used to treat better wounds.Banana peel added to chitosan as matrix filler with concentration(0,1,3,5,7,10% wt),then the dressing membrane swelling in 48 hours is at 0% wt 120.5931%,at 1% wt 99.9981%,3% wt 79.2916%,5% wt is 68.1819%,7% wt is 61.9173% and 10% wt is 45.3981%.Fourier Transform Infrared(FTIR)test,Scanning Electron Microscopy(SEM),swelling properties were carried out to characterize the prepared film.Antimicrobial tests were carried out by disc diffusion method and film growth inhibitory effects including different amounts studied in Escherichia coli and Staphylococcus aureus.FTIR at a concentration of 7% wt showed that there was an interaction between banana peel and chitosan on the absorption band 3185,728 cm~(-1).In SEM the best sample morphology structure at 5% wt shows a good interface interface.Addition of banana peel as lignin decreases the level of swelling of water in wound dressing.In addition,Staphylococcus aureus is the most sensitive strain recorded in wound dressing.Banana skin which is included in chitosan film seems to be a potential and new biomaterial for wound healing applications.
机译:新的伤口敷料提供和促进伤口愈合过程的研究。本研究的目的是在香蕉果皮上开发木质素的伤口敷料,然后将其进入壳聚糖FDM以进行伤口敷料应用。使用香蕉皮帮助形成皮肤化合物,使它们可用于治疗更好的伤口。添加到壳聚糖作为基质填料的浓度(0.1,3,5,7,10%wt),然后在48次膨胀小时为0%wt 120.5931%,1%wt 99.9981%,3%wt 79.2916%,5%wt为68.1819%,7%wt为61.9173%,10%wt为45.3981%.fourier变换红外(FTIR)测试,进行扫描电子显微镜(SEM),进行溶胀性能以表征制备的薄膜。通过盘扩散方法和薄膜生长抑制作用进行,包括在大肠杆菌和金黄色葡萄球菌中研究不同量的薄膜生长抑制作用。浓度为7 %wt显示有一个互动赌注威恩香蕉皮和壳聚糖在吸收带上3185,728厘米〜(-1)。在SEM中最好的样品形态结构5%wt显示出一个很好的界面界面。香蕉果皮作为木质素降低水平的水平伤口敷料。此外,金黄色葡萄球菌是伤口敷料中记录的最敏感的菌株。壳聚糖薄膜中包含的盆栗皮肤似乎是伤口愈合应用的潜在和新的生物材料。

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