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通过生物介导的 ZnO 纳米粒子增强抗生素作用和抗肿瘤能力。

Antibiotic potentiation and anti-cancer competence through bio-mediated ZnO nanoparticles.

机构信息

Dept. of Pharmaceutics, Shri Vishnu College of Pharmacy, Vishnupur, Bhimavaram 534202, Andhra Pradesh, India.

Department of Materials Science and Engineering, Chungnam National University, Daeduk Science Town, 34134 Daejeon, Republic of Korea.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Oct;103:109756. doi: 10.1016/j.msec.2019.109756. Epub 2019 May 28.

Abstract

Zinc Oxide (ZnO) is currently used in nano-cosmeceuticals and nano-pharmaceuticals topically due to their multifunctional efficiency irrespective of the synthetic method. Bio-reducers are cosmopolitically famed to attain stable, reliable, and toxic free synthesis. Thus, the objective of the current study is to prepare ZnO NPs in a greener approach using Annona squamosa (AS) leaf extract and to evaluate their antibiotic potentiation capacity and anticancer activity. The novel synthetic process of ZnO NPs was performed without using any chemicals (reducing or stabilizing agents) or high temperature processing under continuous stirring and refluxion in the presence of oxygen environment. AS have renowned phytochemicals with medicinal properties. Therefore, the mounting of secondary metabolites onto ZnO NPs during synthesis as reducing, stabilizing, capping agents may impart additional biomedical efficacy. The ZnO NPs were prepared with the assessment of stabilization (characteristic peak at 375 nm) from absorbance spectra. Further, SEM, TEM, XRD, FTIR, and Raman analysis of AS-ZnO NPs were performed to elucidate the size, shape, nature, chemical structure and composition. The characterization techniques revealed particles of 20-50 nm size, hexagonal shaped crystalline structure with diverse phytochemicals and functional groups. In addition, AS-ZnO NPs were investigated for antibacterial activity along with antibiotic potentiating capability through combinational assay. Furthermore, the anticancer potential of AS-ZnO NPs was evaluated against HeLa cell line along with assessment of biocompatibility on HEK-293 cell line using MTT assay. Based on the findings, our study exploits green-synthesized ZnO NPs as an effective strategy for potentiation of antibiotic activity and anticancer activity in a biocompatible perspective.

摘要

氧化锌 (ZnO) 目前因其多功能效率而被用于纳米化妆品和纳米药物的局部应用,而与其合成方法无关。生物还原剂在全球范围内因其能够获得稳定、可靠和无毒的合成而闻名。因此,目前的研究旨在使用番荔枝 (AS) 叶提取物以更环保的方法制备 ZnO NPs,并评估其抗生素增效能力和抗癌活性。新型 ZnO NPs 的合成过程在没有使用任何化学物质(还原剂或稳定剂)或在有氧环境下通过连续搅拌和回流进行高温处理的情况下进行。AS 具有具有药用特性的著名植物化学物质。因此,在合成过程中将次级代谢物作为还原剂、稳定剂、封端剂组装到 ZnO NPs 上可能会赋予其额外的生物医学功效。通过吸收光谱评估 ZnO NPs 的稳定性(特征峰在 375nm 处)来制备 ZnO NPs。此外,对 AS-ZnO NPs 进行 SEM、TEM、XRD、FTIR 和 Raman 分析,以阐明其尺寸、形状、性质、化学结构和组成。这些特性研究技术表明,颗粒尺寸为 20-50nm,具有六方晶形结晶结构,并具有多种植物化学物质和官能团。此外,通过组合测定法研究了 AS-ZnO NPs 的抗菌活性及其抗生素增效能力。此外,还通过 MTT 测定法评估了 AS-ZnO NPs 对 HeLa 细胞系的抗癌潜力以及对 HEK-293 细胞系的生物相容性。基于这些发现,我们的研究利用绿色合成的 ZnO NPs 作为一种有效的策略,从生物相容性的角度提高抗生素活性和抗癌活性。

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