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通过力学和治疗潜力方面的银离子绿色还原来制造高浓度多功能银纳米粒子。

Highly Concentrated Multifunctional Silver Nanoparticle Fabrication through Green Reduction of Silver Ions in Terms of Mechanics and Therapeutic Potentials.

机构信息

Pharmaceutical Sciences Research Center, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.

Hemoglobinopathy Institute, Mazandaran University of Medical Sciences, Sari, Iran.

出版信息

Anticancer Agents Med Chem. 2019;19(17):2140-2153. doi: 10.2174/1871520619666191021115609.

Abstract

BACKGROUND

Green synthesis of silver nanoparticles (AgNPs) is limited to produce AgNPs with only relatively low concentrations, and is unsuitable for large-scale productions. The use of Myrtus communis (MC) leaf methanolic extract (rich in hydrolyzable tannins) has been recommended to resolve the issues related to the aggregation of nanoparticles at high concentrations of silver ions with added facet of antioxidant properties.

METHODS

The produced highly concentrated MC-AgNPs were characterized by using imaging and spectroscopic methods. Subsequently, antioxidant, anticancer and antifungal activities of the nanoparticles were evaluated.

RESULTS

The thermogravimetric analysis and energy dispersive spectroscopy quantitative results suggested that the nanoparticles are biphasic in nature (bio-molecule + Ag0) and layered in structure, suggesting the formation of nanoparticles through a different mechanism than those described in the literature. MC-AgNPs showed greater scavenging activity of nitric oxide and iron (II) chelating ability than the extract. It also showed good reducing power compared to the standard antioxidant. Remarkable anticancer activity of MC-AgNPs (IC50 = 5.99µg/mL) was found against HCT-116 (human colon carcinoma) cell lines after 24h exposure with a therapeutic index value 2-fold higher than the therapeutic index of standard doxorubicin. Furthermore, distinct antifungal activity (MIC = 4µg/mL) was found against Candida krusei.

CONCLUSION

The current method outperforms the existing methods because it produces a large amount of multifunctional nanoscale hybrid materials more efficiently using natural sources; thus, it may be used for diverse biomedical applications.

摘要

背景

绿色合成法(即通过使用植物提取物)制备的银纳米粒子(AgNPs)的浓度相对较低,不适合大规模生产。使用桃金娘(Myrtus communis,MC)叶甲醇提取物(富含可水解单宁)已被推荐用于解决与高浓度银离子聚集相关的问题,并增加了抗氧化性能。

方法

使用成像和光谱方法对所制备的高浓度 MC-AgNPs 进行了表征。随后,评估了纳米粒子的抗氧化、抗癌和抗真菌活性。

结果

热重分析和能量色散光谱定量结果表明,纳米粒子本质上是双相的(生物分子+Ag0)和层状结构,这表明纳米粒子的形成机制不同于文献中描述的机制。MC-AgNPs 对一氧化氮的清除活性和铁(II)螯合能力均大于提取物。与标准抗氧化剂相比,它还具有良好的还原能力。在 24 小时暴露于 HCT-116(人结肠癌细胞系)后,MC-AgNPs 表现出显著的抗癌活性(IC50=5.99µg/mL),其治疗指数值比标准阿霉素高 2 倍。此外,对克柔念珠菌(Candida krusei)表现出明显的抗真菌活性(MIC=4µg/mL)。

结论

与现有的方法相比,本方法的优势在于它使用天然来源更有效地生产大量多功能纳米级杂化材料,因此可用于多种生物医学应用。

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