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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Microwave Thermally Assisted Porous Structured Cerium Oxide/Zinc Oxide Design: Fabrication, Electrochemical Activity Towards Pb Ions, Anticancer Assessment in HeLa and VERO Cell Lines
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Microwave Thermally Assisted Porous Structured Cerium Oxide/Zinc Oxide Design: Fabrication, Electrochemical Activity Towards Pb Ions, Anticancer Assessment in HeLa and VERO Cell Lines

机译:微波热辅助多孔结构氧化铈/氧化锌设计:制造,电化学活动朝向PB离子,Hela和Vero细胞系的抗癌评估

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摘要

In this research work, Cerium Oxide/Zinc Oxide (CeO2/ZnO) composite nanorods are fabricated on aluminium foil substrate using microwave assisted hydrothermal technique. Their crystalline and morphological properties were confirmed using X-Ray diffraction technique (XRD) and scanning electron microscopy (SEM). The aim is to estimate the potential purpose for implementing to possible lead sensor and to analyse their anti-cancer properties against HeLa cells for cervical cancer applications. The developed structural CeO2/ZnO composite and ZnO nanoparticle systems have been evaluated for anti-cancer efficacy against HeLa (cervical cancerous cell line) and normal (VERO-non cancerous) cell lines. Their results reveal that, CeO2/ZnO composite nanorods have higher cytotoxic behavior than ZnO NPs against HeLa cancer cells. Under optimized conditions, cyclic voltammetry (CV) was used to study the surface area and employed as working electrode to exploit on sensor characteristics towards the Pb ions. The substantial working electrode characteristics were investigated in phosphate buffer solution (PBS pH 7.4) diluted rice water medium using CV towards typical Pb ions detection. Differential pulse voltammetry (DPV) reveals the sensitivity (19.32 mu M/mA) with detection limit (LOD) 14.7 nM and compared with previously reported electrodes exhibiting significant electrochemical sensing activity towards Pb ions. Thus the outcomes on structural CeO2/ZnO composite system can be used as electrochemical lead sensor and cervical cancer diagnosis applications.[GRAPHICS].
机译:在该研究中,使用微波辅助水热技术在铝箔基板上制造氧化铈/氧化锌(CeO2 / ZnO)复合纳米棒。使用X射线衍射技术(XRD)和扫描电子显微镜(SEM)确认它们的结晶和形态学性质。目的是估算实施到可能的铅传感器的潜在目的,并分析其对宫颈癌应用的Hela细胞的抗癌性能。已经评估了发育的结构CeO2 / ZnO复合材料和ZnO纳米粒子系统,用于对HeLa(宫颈癌癌细胞系)和正常(Vero-NON癌)细胞系的抗癌疗效进行抗癌疗效。他们的结果表明,CeO2 / ZnO复合纳米杆具有比ZnO NPS对抗HeLa癌细胞的细胞毒性行为较高。在优化条件下,使用循环伏安法(CV)研究表面积并用作工作电极以利用对PB离子的传感器特性。使用CV朝向典型的PB离子检测研究了在磷酸盐缓冲溶液(PBS pH 7.4)稀释的水稻水介质中进行了实质的工作电极特性。差分脉冲伏安法(DPV)揭示了具有检测极限(LOD)14.7nm的灵敏度(19.32μm/ mA),并与先前报告的电极对Pb离子具有显着的电化学感测活度进行比较。因此,结构CEO2 / ZnO复合系统的结果可用作电化学铅传感器和宫颈癌诊断应用。[图形]。

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