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首页> 外文期刊>Biomimetics >Application of Response Surface Methodology for Optimizing the Therapeutic Activity of ZnO Nanoparticles Biosynthesized from &i&Aspergillus niger&/i&
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Application of Response Surface Methodology for Optimizing the Therapeutic Activity of ZnO Nanoparticles Biosynthesized from &i&Aspergillus niger&/i&

机译:响应面方法在优化ZnO纳米粒子生物合成的治疗活性的应用。LT; I& GT; LT; / i&

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In this study, the biosynthesis of zinc oxide nanoparticles using &i&Aspergillus niger&/i& (A/ZnO-NPs) is described. These particles have been characterized by UV–Vis spectrum analysis, X-ray powder diffraction, field emission scanning electron microscopy, and transmission electron microscopy. To use this biosynthesized nanoparticle as an antiproliferative and antimicrobial agent, the IC&sub&50&/sub& value against the breast cancer cell line and inhibition zone against &i&Escherichia coli&/i& were used to optimize the effect of two processing factors including dose of filtrate fungi cell and temperature. The biosynthesized A/ZnO-NPs had an absorbance band at 320 nm and spherical shapes. The mean particles size was 35 nm. RSM (response surface methodology) was utilized to investigate the outcome responses. The Model F-value of 12.21 and 7.29 implies that the model was significant for both responses. The contour plot against inhibition zone for temperature and dose showed that if the dose increases from 3.8 to 17.2 μg/mL, the inhibition zone increases up to 35 mm. As an alternative to chemical and/or physical methods, biosynthesizing zinc oxide NPs through fungi extracts can serve as a more facile and eco-friendly strategy. Additionally, for optimization of the processes, the outcome responses in the biomedical available test can be used in the synthesis of ZnO-NPs that are utilized for large-scale production in various medical applications.
机译:在该研究中,使用& LT; I& GT;曲霉纳米颗粒的生物合成氧化锌纳米颗粒;曲霉& (A / ZnO-NPS)描述于。这些颗粒的特征在于UV-Vis光谱分析,X射线粉末衍射,场发射扫描电子显微镜和透射电子显微镜。使用这种生物合成的纳米粒子作为抗增殖和抗微生物剂,IC& LT;亚& 50& / sub& 对乳腺癌细胞系和抑制区的价值反对& LT; I& GT;埃斯科希亚大肠杆菌& LT; / i& 用于优化两种处理因子的效果,包括滤液真菌细胞和温度的剂量。生物合成的A / ZnO-NPS具有320nm和球形的吸光度带。平均颗粒尺寸为35nm。 RSM(响应表面方法)用于调查结果响应。 F值为12.21和7.29意味着该模型对于两个反应都很重要。对温度和剂量抑制区的轮廓图显示,如果剂量从3.8升至17.2μg/ ml,则抑制区增加至35mm。作为化学和/或物理方法的替代方案,通过真菌提取物生物合成氧化锌NPS可以作为更容易和环保的策略。另外,为了优化该方法,生物医学可用试验中的结果反应可用于合成ZnO-NPS,用于各种医疗应用中的大规模生产。

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