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首页> 外文期刊>Current Microbiology: An International Journal >Novel Biosynthesis of Copper Nanoparticles UsingZingiberandAlliumsp. with Synergic Effect of Doxycycline for Anticancer and Bactericidal Activity
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Novel Biosynthesis of Copper Nanoparticles UsingZingiberandAlliumsp. with Synergic Effect of Doxycycline for Anticancer and Bactericidal Activity

机译:铜纳米粒子的新型生物合成ZingberAdalliumsp。 具有抗癌和杀菌活性的强霉素的协同作用

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Copper nanoparticles (CuNPs), due to their cost-effective synthesis, interesting properties, and a wide range of applications in conductive inks, cooling fluids, biomedical field, and catalysis, have attracted the attention of scientific community in recent years. The aim of the present study was to develop and characterize antibacterial and anticancer CuNPs synthesized via chemical and biological methods, and further synthesize CuNPs conjugated with doxycycline to study their synergic effect. During the chemical synthesis, ascorbic acid was used as a stabilizing agent, whileZingiber officinaleandAllium sativum-derived extracts were used during the biological methods for synthesis of CuNPs. Characterization of CuNPs was performed by transmission electron microscopy (TEM), UV-visible spectroscopy, Fourier transform infrared spectroscopy (FTIR), and X-ray crystallography (XRD). Antimicrobial evaluation of the nanomaterials againstPseudomonas aeruginosaandEscherichia coliwas performed by using disk diffusion method, while anticancer behavior against HeLa and HepG2 cell lines was studied by MTT assay. TEM revealed spherical-shaped nanoparticles with mean size of 22.70 +/- 5.67, 35.01 +/- 5.84, and 19.02 +/- 2.41 nm for CuNPs, Gin-CuNPs, and Gar-CuNPs, respectively, and surface plasmon resonance peaks were obtained at 570 nm, 575 nm, and 610 nm for CuNPs, Gar-CuNPs, and Gin-CuNPs, respectively. The results of FTIR confirmed the consumption of biomolecules from the plant extracts for the synthesis of CuNPs. XRD analysis also confirmed synthesis of CuNPs. Doxycycline-conjugated NPs exhibited more antibacterial effects than doxycycline or CuNPs alone. Copper nanoparticles prepared by biological synthesis are cost-effective and eco-friendly as compared to their chemical counterparts. The chemically synthesized nanoparticles displayed more significant antimicrobial activity when capped with doxycycline thanZ. officinaleandA. sativum-mediated CuNPs; however, green-synthesized nanoparticles showed greater anticancer activity than their chemical counterparts.
机译:铜纳米粒子(CUNP),由于其具有成本效益的合成,有趣的性质和各种导电油墨,冷却液,生物医学领域和催化作用,近年来引起了科学界的关注。本研究的目的是开发和表征通过化学和生物学方法合成的抗菌和抗癌丘复比,并进一步合成与强霉素缀合的CUNP,以研究其协同作用。在化学合成期间,使用抗坏血酸作为稳定剂,在合成CUNP的生物学方法中使用辛纤维OfficinalAlium Sativum衍生的提取物。 CUNP的表征通过透射电子显微镜(TEM),UV可见光光谱,傅里叶变换红外光谱(FTIR)和X射线晶体学(XRD)进行。通过使用磁盘扩散方法进行纳米材料的抗微生物评价纳米材料粉刺铜绿假单胞菌,而MTT测定研究了针对Hela和HepG2细胞系的抗癌行为。 TEM揭示了CUNP,GIN-CUNP和GAR-CUNP的平均尺寸为22.70 +/- 5.67,35.01 +/- 5.67,35.01 +/- 5.84和19.02 +/- 2.41nm的球形纳米粒子,并获得了表面等离子体共振峰对于CUNP,GAR-CUNP和GIN-CUNP,分别在570nm,575 nm和610 nm处。 FTIR的结果证实了来自植物提取物的生物分子消耗用于合成CUNP。 XRD分析还证实了CUNP的合成。十二胞环素 - 缀合的NPS仅表现出比单根霉素或CUNP更多的抗菌作用。通过生物合成制备的铜纳米粒子与其化学对应物相比具有成本效益和环保。在用十二胞环素TANZ封闭时,化学合成的纳米颗粒在封端时显示出更明显的抗微生物活性。 officinaleanda。 Sativum介导的CUNP;然而,绿色合成的纳米颗粒显示出比其化学对应物更大的抗癌活性。

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