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Anticancer Potential of Green Synthesized Silver Nanoparticles Using Extract of Nepeta deflersiana against Human Cervical Cancer Cells (HeLA)

机译:荆芥提取物对人宫颈癌细胞(HeLA)的绿色合成银纳米粒子的抗癌潜力。

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In this study, silver nanoparticles (AgNPs) were synthesized using aqueous extract of Nepeta deflersiana plant. The prepared AgNPs (ND-AgNPs) were examined by ultraviolet-visible spectroscopy, Fourier transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscope (SEM), and energy dispersive spectroscopy (EDX). The results obtained from various characterizations revealed that average size of synthesized AgNPs was 33 nm and in face-centered-cubic structure. The anticancer potential of ND-AgNPs was investigated against human cervical cancer cells (HeLa). The cytotoxic response was assessed by 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide (MTT), neutral red uptake (NRU) assays, and morphological changes. Further, the influence of cytotoxic concentrations of ND-AgNPs on oxidative stress markers, reactive oxygen species (ROS) generation, mitochondrial membrane potential (MMP), cell cycle arrest and apoptosisecrosis was studied. The cytotoxic response observed was in a concentration-dependent manner. Furthermore, the results also showed a significant increase in ROS and lipid peroxidation (LPO), along with a decrease in MMP and glutathione (GSH) levels. The cell cycle analysis and apoptosisecrosis assay data exhibited ND-AgNPs-induced SubG1 arrest and apoptoticecrotic cell death. The biosynthesized AgNPs-induced cell death in HeLA cells suggested the anticancer potential of ND-AgNPs. Therefore, they may be used to treat the cervical cancer cells.
机译:在这项研究中,使用荆芥植物的水提取物合成了银纳米颗粒(AgNPs)。制备的AgNPs(ND-AgNPs)通过紫外-可见光谱,傅里叶变换红外(FTIR)光谱,X射线衍射(XRD),透射电子显微镜(TEM),扫描电子显微镜(SEM)和能量色散光谱进行检查(EDX)。从各种表征获得的结果表明,合成的AgNPs的平均大小为33 nm,呈面心立方结构。研究了ND-AgNPs对人宫颈癌细胞(HeLa)的抗癌潜力。通过3-(4,5-二甲基噻唑-2-基)-2、5-二苯基溴化四溴化铵(MTT),中性红吸收(NRU)分析和形态变化来评估细胞毒性反应。此外,研究了ND-AgNPs的细胞毒性浓度对氧化应激标记,活性氧(ROS)生成,线粒体膜电位(MMP),细胞周期停滞和凋亡/坏死的影响。观察到的细胞毒性反应是浓度依赖性的。此外,结果还显示ROS和脂质过氧化(LPO)显着增加,MMP和谷胱甘肽(GSH)水平降低。细胞周期分析和凋亡/坏死分析数据显示ND-AgNPs诱导SubG1阻滞和凋亡/坏死细胞死亡。由生物合成的AgNPs诱导的HeLA细胞死亡表明ND-AgNPs具有抗癌潜力。因此,它们可以用于治疗子宫颈癌细胞。

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