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Investigation of Cold Atmospheric Plasma Activity in PCL/ZnO Tissue Scaffolding To Be Used in Wound Tissues

机译:PCL / ZnO组织脚手架中冷大气血浆活性的研究伤口组织

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Wounds can be vital dangerous for a patient’s life, so wound healing is one of the essential topics. Tissue engineers have investigated tissue scaffolds for wound healing. Scaffolding materials can be natural or synthetic, and the researchers use polycaprolactone (PCL) and zinc oxide (ZnO) nanoparticles to improve wound healing and minimize the infection risk. Cold atmospheric plasma (CAP) is a new area. CAP is used in many areas such as cancer treatment; besides, it is the more crucial properties to avoid the bacteria formation and provide healing the many different types of wound tissues. In this sense, plasma is of great importance in protecting life in all kinds of materials that will be placed inside the living thing. In this study, PCL were used in different amounts of ZnO-NPs; 5%, 10%, and 15% of total weight. Then, scaffolds were obtained using the electrospinning technique. CAP applied on the obtained scaffolds in different exposure times; 15 sec., 25sec., and 35sec. After CAP treatment; contact angle measurement and antibacterial test were made. Test results show that, depending on the CAP exposure time, the contact angle decreases, but the antibacterial effect increases.
机译:伤口对于患者的生命来说可能对危险至关重要,因此伤口愈合是重要的主题之一。组织工程师研究了伤口愈合的组织支架。脚手架材料可以是天然或合成的,研究人员使用聚己内酯(PCL)和氧化锌(ZnO)纳米颗粒来改善伤口愈合并最小化感染风险。冷气氛等离子体(帽)是一个新的区域。帽用于癌症治疗等许多领域;此外,它是避免细菌形成的关键性质,并提供愈合许多不同类型的伤口组织。从这个意义上讲,等离子体在保护所有物料中的生活中非常重要,这将被放置在生物内。在该研究中,PCL用于不同量的ZnO-NPS;总重量的5%,10%和15%。然后,使用静电纺丝技术获得支架。在不同的曝光时间内施加在所获得的支架上; 15秒,25秒,和35秒。帽子治疗后;采用接触角测量和抗菌试验。测试结果表明,根据盖帽曝光时间,接触角减少,但抗菌效果增加。

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