Beijing Advanced Innovation Center for Food Nutrition and Human Health, Beijing Technology & Business University (BTBU), Beijing 100048, China.
School of Light Industry, Beijing Technology & Business University (BTBU), Beijing 100048, China.
Molecules. 2021 Sep 13;26(18):5559. doi: 10.3390/molecules26185559.
Among the trace elements, selenium (Se) has great demand as a health supplement. Compared to its other forms, selenium nanoparticles have minor toxicity, superior reactivity, and excellent bioavailability. The present study was conducted to produce selenium nanoparticles (SeNPs) via a biosynthetic approach using probiotic BSN313 in an economical and easy manner. The BSN313 exhibited a gradual increase in Se reduction and production of SeNPs up to 5-200 µg/mL of its environmental Se. However, the capability was decreased beyond that concentration. The capacity for extracellular SeNP production was evidenced by the emergence of red color, then confirmed by a microscopic approach. Produced SeNPs were purified, freeze-dried, and subsequently characterized systematically using UV-Vis spectroscopy, FTIR, Zetasizer, SEM-EDS, and TEM techniques. SEM-EDS analysis proved the presence of selenium as the foremost constituent of SeNPs. With an average particle size of 530 nm, SeNPs were shown to have a -26.9 (mV) zeta potential and -2.11 µm cm/Vs electrophoretic mobility in water. SeNPs produced during both the 24 and 48 h incubation periods showed good antioxidant activity in terms of DPPH and ABST scavenging action at a concentration of 150 µg/mL with no significant differences ( > 0.05). Moreover, 200 µg/mL of SeNPs showed antibacterial reactivity against ATCC 8739, ATCC 9027, and ATCC 25923. In the future, this work will be helpful to produce biogenic SeNPs using probiotic BSN313 as biofactories, with the potential for safe use in biomedical and nutritional applications.
在微量元素中,硒(Se)作为一种健康补充剂需求量很大。与其他形式相比,硒纳米颗粒的毒性较小、反应性更强、生物利用度更高。本研究旨在通过使用益生菌 BSN313 以经济且简单的方式生产硒纳米颗粒(SeNPs)。BSN313 显示出逐渐增加的 Se 还原和生产 SeNPs 的能力,直至其环境 Se 的浓度达到 5-200μg/ml。然而,超过该浓度后,这种能力就会下降。通过出现红色颜色来证明细胞外 SeNP 生产能力,然后通过显微镜方法进行确认。生产的 SeNPs 经过纯化、冷冻干燥,然后使用 UV-Vis 光谱、FTIR、Zetasizer、SEM-EDS 和 TEM 技术进行系统表征。SEM-EDS 分析证明硒是 SeNPs 的主要成分。SeNPs 的平均粒径为 530nm,具有-26.9(mV)的 ζ 电位和-2.11µmcm/Vs 的电泳迁移率在水中。在 24 和 48 小时孵育期间生产的 SeNPs 在 150μg/ml 浓度下显示出良好的抗氧化活性,在 DPPH 和 ABST 清除作用方面没有显著差异(>0.05)。此外,200μg/ml 的 SeNPs 对 ATCC 8739、ATCC 9027 和 ATCC 25923 表现出抗菌反应性。未来,这项工作将有助于使用益生菌 BSN313 作为生物工厂生产生物源 SeNPs,具有在生物医学和营养应用中安全使用的潜力。