凤凰果提取物制备纳米银及其体外抗菌和细胞毒作用研究

S. Zafar, Aiman Zafar
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引用次数: 30

摘要

本文以枣椰树果实水提物为原料,采用生物绿色技术合成了纳米银。该方法具有简单、快速、无毒、可持续等优点,可替代传统的物理/化学方法。从枣果实提取物中提取的AgNPs的细胞毒活性在早期的研究中未被提及。采用傅里叶变换红外光谱(FT-IR)、紫外可见光谱(UV-vis)和透射电子显微镜(TEM)对生物合成的AgNPs进行了分析。并对其对人乳腺癌细胞株(MCF-7)的潜在细胞毒性进行了评价。红外光谱研究表明,红枣提取物中存在的碳水化合物、酚酸和类黄酮等植物分子参与了AgNPs的还原和封顶。紫外-可见光谱在425 nm处显示表面等离子体共振(SPR),表明AgNPs存在于水萃取物中。TEM显微图显示,AgNPs颗粒直径在20 ~ 100 nm之间,呈球形。生物合成的AgNPs对人类微生物菌株具有明显的抑菌活性。植物合成的NPs还通过坏死、凋亡和线粒体抑制机制诱导细胞毒性,这些机制可以在细胞周期的各个阶段扰乱细胞成分。本研究认为,利用凤凰花生物合成AgNPs具有成本效益高、快速、无毒、可持续等特点,可作为乳腺癌辅助治疗的有效手段。
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Biosynthesis and Characterization of Silver Nanoparticles Using Phoenix dactylifera Fruits Extract and their In Vitro Antimicrobial and Cytotoxic Effects
In this article, silver nanoparticles (AgNPs) were synthesized by the biological green technique, using the aqueous extracts obtained from fruits of Phoenix dactylifera (date palm). This method is simple, rapid, non-toxic, and sustainable, and substitutes for the conventional physical/chemical methods. The cytotoxic activities of AgNPs derived from date fruit extract have not been mentioned in the earlier studies. The biosynthesized AgNPs are analyzed by Fourier transform infrared spectroscopy (FT-IR), UV-visible spectroscopy (UV-vis), and Transmission Electron Microscopy (TEM) methods. The assessment of antimicrobial effect towards human pathogenic microbial strains and their potential cytotoxicity against human breast cancer cell lines (MCF-7) were also evaluated. FT-IR spectral studies showed that phytomolecules such as carbohydrates, phenolic acids and flavonoids present in date fruits extract are involved in the reduction and capping of the AgNPs. UV-vis spectrum revealed Surface Plasmon Resonance (SPR) at 425 nm which attributes the presence of AgNPs in aqueous extract. TEM micrographs showed that AgNPs particle diameter is ranged from 20 nm to 100 nm with spherical morphology. The biosynthesized AgNPs exhibited significant antimicrobial activity towards human microbial strains. Phytosynthesized NPs also induce cytotoxicity via necrosis, apoptosis and mitodepressive mechanisms that can disturb the cellular components at various stages of cell cycle. The present study concludes that biologically synthesized AgNPs using Phoenix dactylifera is cost-effective, rapid, non-toxic, and sustainable and can be effectively used as an adjunct for the treatment of breast carcinoma.
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