生物制造的银纳米粒子:作为潜在纳米药物对宫颈癌和肝癌细胞的治疗评估

IF 5.5 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Irshad Ahamad, Masood Nadeem, M. Moshahid Alam Rizvi, Tasneem Fatma
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引用次数: 0

摘要

纳米生物技术发展迅速,现已广泛应用于现代疾病的诊断和治疗。生物合成纳米银(AgNPs)是一种生态友好、经济高效、具有生物相容性的纳米银材料,在低浓度条件下具有生物医学特性。本研究以蓝藻(Anabaena variabilis)提取物为原料合成易降解、可靠的AgNPs,并利用物化技术对生物合成的AgNPs进行表征。原子力显微镜研究证实了AgNPs的形状,扫描电镜研究显示AgNPs的尺寸范围为17 ~ 35 nm。zeta电位值为-19.5 mV,表明AgNPs之间存在排斥作用,阻止了它们的聚集,热重差热分析证实了AgNPs的热稳定性。另一个重要的特征,如AgNPs的元素成分,是通过电感耦合等离子体质谱测定的,在各自浓度的AgNPs中,银的含量分别为94.24、95.19、97.06和99.34%。AgNPs对HeLa、SiHa(宫颈癌)和HepG2(人肝癌)细胞系进行体外细胞毒性筛选。采用AgNPs永生化人胚胎肾(HEK-293)细胞系评价其生物相容性。AgNPs对HeLa、SiHa和HepG2细胞株的IC50值分别为23.76±2.4µg/mL、11.21±1.7µg/mL和22.27±1.8µg/mL。AgNPs对HEK-293细胞具有生物相容性,正常细胞系(HEK-293)细胞毒性结果显示,在所有浓度下,AgNPs的细胞存活率均≥95%。在DAPI(4′,6-二氨基-2-苯基吲哚)染色研究中,IC50剂量AgNPs对癌细胞(HeLa, SiHa和HepG2)的核形态发生改变,表明癌细胞DNA损伤和凋亡。与对照组相比,AgNPs处理的癌细胞中,所有三种癌细胞的细胞周期的G0-G1和G2/M期的细胞数量减少,而S期的细胞数量增加。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bio-fabricated silver nanoparticles: therapeutic evaluation as a potential nanodrug against cervical and liver cancer cells

Nanobiotechnology has grown rapidly and is now widely used in the diagnosis and treatment of modern diseases. Biosynthesized silver nanoparticles (AgNPs) are eco-friendly, cost-effective, biocompatible route, and have biomedical properties at minimal concentrations. In the present study extract of cyanobacterium (Anabaena variabilis) was utilized to synthesize facile, reliable AgNPs, further biosynthesized AgNPs were characterized by physicochemical techniques. The atomic force microscope study confirmed the shape of AgNPs while the scanning electron microscopy study revealed 17 to 35 nm in the size range. The zeta potential value of -19.5 mV demonstrated the repulsion effect between the particles, which prevents their aggregations while the heating stability of AgNPs was confirmed by Thermogravimetry differential thermal analysis. Another important characteristic, such as elemental constituent of AgNPs was determined by inductively coupled plasma mass spectrometry and was observed 94.24, 95.19, 97.06, and 99.34% of silver present in their respective concentrations of AgNPs. In vitro cytotoxicity of AgNPs was screened on HeLa, SiHa, (Cervical carcinoma), and HepG2 (Human hepatocellular carcinoma), cell lines. To evaluate the biocompatibility of AgNPs immortalized human embryonic kidney (HEK-293) cell line was used. The IC50 values of AgNPs are were observed as 23.76 ± 2.4 µg/mL, 11.21 ± 1.7 µg/mL, and 22.27 ± 1.8 µg/mL against HeLa, SiHa and HepG2 cell lines respectively. AgNPs demonstrated the biocompatible nature against HEK-293 cells, Normal cell line (HEK-293) cytotoxicity results showed exhibited ≥ 95% cell viability at all the concentrations. During the DAPI (4’,6-diamidino-2-phenylindole) staining study IC50 dose of AgNPs on cancer cell lines (HeLa, SiHa, and HepG2) showed nuclear morphological alterations which indicate the DNA damage and apoptosis in cancer cells. AgNPs treated cancer cells increased the cells number in the S phase while decreased the number of cells in the G0-G1 and G2/M phases of the cell cycle in all three cancer cells compared to the control.

Graphical Abstract

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来源期刊
Nanoscale Research Letters
Nanoscale Research Letters 工程技术-材料科学:综合
CiteScore
11.30
自引率
0.00%
发文量
110
审稿时长
48 days
期刊介绍: Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.
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