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Variation in structure of proteins by adjusting reactive oxygen and nitrogen species generated from dielectric barrier discharge jet

机译:变异蛋白的结构通过调节从电介质阻挡层放电产生的射流活性氧和氮物种

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Over the last few years, the variation in liquid chemistry due to the development of radicals generated by cold atmospheric plasma (CAP) has played an important role in plasma medicine. CAP direct treatment or CAP activated media treatment in cancer cells shows promising anticancer activity for both in vivo and in vitro studies. However, the anticancer activity or antimicrobial activity varies between plasma devices due to the different abilities among plasma devices to generate the reactive oxygen and nitrogen species (RONS) at different ratios and in different concentrations. While the generation of RONS depends on many factors, the feeding gas plays the most important role among the factors. Hence, in this study we used different compositions of feeding gas while fixing all other plasma characteristics. We used Ar, Ar-O2 (at different ratios), and Ar-N2 (at different ratios) as the working gases for CAP and investigated the structural changes in proteins (Hemoglobin (Hb) and Myoglobin (Mb)). We then analyzed the influence of RONS generated in liquid on the conformations of proteins. Additionally, to determine the influence of H2O2 on the Hb and Mb structures, we used molecular dynamic simulation.
机译:在过去的几年中,由于冷大气血浆(帽)产生的自由基的发展,液体化学的变化在血浆医学中发挥了重要作用。癌细胞中的直接治疗或帽活化培养基治疗表明,体内和体外研究中的抗癌活性有前景。然而,由于血浆装置中的不同能力,抗癌活性或抗微生物活性在等离子体器件之间变化,以在不同比例和不同浓度下产生反应性氧和氮物质(鲁)。虽然罗尔斯的产生取决于许多因素,但饲养气体在因素中起最重要的作用。因此,在这项研究中,我们使用了不同的喂料气体组成,同时固定所有其他等离子体特性。我们使用Ar,Ar-O2(以不同的比率)和Ar-N2(以不同的比率)作为帽的工作气体,并研究了蛋白质(血红蛋白(HB)和肌蛋白(MB)的结构变化。然后,我们分析了液体在液体上产生的rons的影响。另外,为了确定H2O2对HB和MB结构的影响,我们使用了分子动态模拟。

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