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首页> 外文期刊>New Journal of Chemistry >The biosynthesis of a graphene oxide-based zinc oxide nanocomposite using Dalbergia latifolia leaf extract and its biological applications
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The biosynthesis of a graphene oxide-based zinc oxide nanocomposite using Dalbergia latifolia leaf extract and its biological applications

机译:使用达伯利亚拉脱叶叶提取物及其生物学应用的石墨烯基氧化锌纳米复合材料的生物合成

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Green-synthesized zinc oxide nanoparticles (ZnO NPs) were fabricated with graphene oxide (GO) nanosheets (Hummers' method) into a ZnO/GO nanocomposite (NC), and those materials were characterized via UV-Vis, FT-IR, XRD, SEM, EDX, TEM, DLS, and zeta potential studies. The UV-Vis spectra exhibited absorption peaks at around 372 nm for ZnO NPs, 233 nm for GO, and 275 and 385 nm for ZnO/GO NC, and the FT-IR spectra also confirmed the formation of ZnO (457 cm(-1)), GO (1052 cm(-1)) and ZnO/GO NC (458 cm(-1)). XRD analysis of the synthesized nanomaterials revealed the hexagonal wurtzite structure of the ZnO NPs. SEM and TEM morphological studies showed that the ZnO NPs were spherical in shape, GO was found to have a sheet-like shape, and ZnO NP immersed nanosheets were seen in ZnO/GO NC. The antibacterial effects of the synthesized nanomaterials ZnO NPs, GO and ZnO/GO NC were assessed against human pathogens, and significant bacterial resistance was exhibited toward Staphylococcus aureus; in particular, ZnO/GO NC served as a potent antibacterial agent. In vitro cytotoxicity studies were conducted on cancer cells treated with ZnO NPs, GO and ZnO/GO NC using lung cancer cells (A549) and human breast cancer cells (MCF-7). MTT assays indicated the significant anticancer activity of ZnO/GO NC (IC50: 15 mu g mL(-1)) against the MCF-7 cell line compared to the nanomaterials ZnO NPs (IC50: 24 mu g mL(-1)) and GO (IC50: 23 mu g mL(-1)). Thus, the study revealed that ZnO/GO NC produced through green synthesis has great potential to be developed into an efficient therapeutic agent against various cancers.
机译:绿色合成的氧化锌纳米颗粒(氧化锌纳米颗粒)与石墨烯氧化物(GO)纳米片(的Hummers'方法)转换成的ZnO / GO纳米复合材料(NC)进行制造,并且这些材料通过紫外 - 可见,FT-IR,XRD进行了表征, SEM,EDX,TEM,DLS和Zeta电位研究。在UV-Vis光谱在周围的ZnO纳米粒子372纳米,GO 233纳米,275和氧化锌/ GO NC 385纳米,和FT-IR光谱也证实ZnO的形成(457厘米(展出吸收峰-1 )),GO(1052厘米(-1))和ZnO / GO NC(458厘米(-1))。合成的纳米材料的XRD分析表明氧化锌纳米粒子的六方纤锌矿结构。 SEM和TEM形态学研究表明,氧化锌纳米颗粒的形状为球形,GO被发现具有片状形状,和ZnO NP浸入纳米片以ZnO / GO NC均可见。合成的纳米材料的ZnO纳米粒子,GO和ZnO / GO NC的抗菌作用进行了评估抗人病原体和细菌显著电阻朝向金黄色葡萄球菌显示出;特别是,氧化锌/ GO NC充当有效的抗菌剂。在体外细胞毒性研究在含ZnO的NP,GO和ZnO / GO NC治疗的癌症细胞中使用肺癌细胞(A549)和人乳腺癌细胞(MCF-7)进行的。 MTT测定指示的ZnO / GO NC的显著抗癌活性(IC 50:15亩克毫升(-1))相比较,纳米材料的ZnO纳米粒子的MCF-7细胞系(IC50:24亩克毫升(-1)),并GO(IC50:23亩克毫升(-1))。因此,该研究表明,氧化锌/ GO NC通过绿色合成产生具有很大的潜力被开发成针对各种癌症的有效治疗剂。

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