Department of Pharmacognosy, College of Pharmacy, Najran University, Najran, Saudi Arabia.
Department of Oral Pathology, Faculty of Dentistry, King Salman International University, El-Tur, Egypt.
Int J Nanomedicine. 2024 Sep 10;19:9317-9332. doi: 10.2147/IJN.S453689. eCollection 2024.
: Polyvinyl alcohol-capped silver nanostructures (cAgNSs) were investigated in order to enhance the cytotoxicity, pro-apoptotic, and oxidant patterns of in human laryngeal carcinoma Hep-2 cells by employing a 50 mT electromagnetic field (LEMF) for 30 min.
Wet chemical reduction was used to synthesize the cAgNSs, and after they had been capped with polyvinyl alcohol, they were specifically examined for particle size analysis and structural morphology. To visualize how the silver may attach to the protein targets, a molecular docking study was conducted. Estimation of cytotoxicity, cell cycle progression supported by mRNA expression of three apoptotic-promoting genes and one apoptotic-resisting.
Particle size analysis results were a mean particle size of 157.3±0.5 nm, zeta potential value of -29.6 mV±1.5 mV, and polydispersity index of 0.31±0.05. Significantly reduction of IC against Hep-2 cells by around 6-fold was concluded. Also, we obtained suppression of the proliferation of Hep-2 cells, especially in the G/G and S phases. Significant enhanced mRNA expression revealed enhanced induced CASP3, p53, and Beclin-1 mediated pro-apoptosis and induced NF-κB mediated autophagy in Hep-2 cells. Augmented levels of GR, ROS and MDA as oxidative stress biomarkers were also obtained. HE staining of Hep-2 cells exposed to cAgNSs and LEMF confirmed the enhanced apoptotic potential comparatively.
By conclusion, the developed nano-sized structures with the aid of extremely-low frequency electromagnetic field were successful to fortify the anti-cancer profile of cAgNSs in Hep-2 cells.
为了增强人喉癌细胞 Hep-2 细胞的细胞毒性、促凋亡和氧化模式,采用 50mT 电磁场(LEMF)作用 30 分钟,研究了聚乙烯醇封端的银纳米结构(cAgNSs)。
采用湿化学还原法合成 cAgNSs,用聚乙烯醇封端后,对其进行粒径分析和结构形态学专门研究。为了观察银可能与蛋白质靶标结合的方式,进行了分子对接研究。估计细胞毒性、细胞周期进展,支持三种促凋亡基因和一种抗凋亡基因的 mRNA 表达。
粒径分析结果表明平均粒径为 157.3±0.5nm,zeta 电位值为-29.6mV±1.5mV,多分散指数为 0.31±0.05。结论是 Hep-2 细胞的 IC 约降低了 6 倍。此外,我们还获得了 Hep-2 细胞增殖的抑制,特别是在 G/G 和 S 期。显著增强的 mRNA 表达揭示了 caspase-3、p53 和 Beclin-1 介导的促凋亡增强,以及 NF-κB 介导的自噬增强。还获得了作为氧化应激生物标志物的 GR、ROS 和 MDA 水平的增加。暴露于 cAgNSs 和 LEMF 的 Hep-2 细胞的 HE 染色证实了比较增强的凋亡潜力。
总之,在极低频电磁场的帮助下开发的纳米结构成功增强了 cAgNSs 在 Hep-2 细胞中的抗癌特性。