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生姜(Zingiber officinale)提取物介导的银纳米粒子的绿色合成及其对直接蓝 15 或直接橙 26 的抗氧化活性和潜在催化还原活性的评价。

Ginger (Zingiber officinale) extract mediated green synthesis of silver nanoparticles and evaluation of their antioxidant activity and potential catalytic reduction activities with Direct Blue 15 or Direct Orange 26.

机构信息

School of Biological Sciences and Engineering, Shaanxi University of Technology, Hanzhong, Shaanxi, China.

Qinba State Key Laboratory of Biological Resources and Ecological Environment, Hanzhong, Shaanxi, China.

出版信息

PLoS One. 2022 Aug 25;17(8):e0271408. doi: 10.1371/journal.pone.0271408. eCollection 2022.

Abstract

The green synthesis of silver nanoparticles (AgNPs) using a water extract of Ginger (Zingiber officinale) root by microwave irradiation and its antibacterial activities have been reported. However, AgNPs prepared from different parts of ginger root water or ethanol extract by ultrasound synthesis and their antioxidant activity and whether the biogenic could be used to catalyze the reduction of hazardous dye are unknown. This study concentrated on the facile green synthesis of AgNPs prepared from different parts (unpeeled ginger, peeled ginger, and ginger peel) of ginger root water or ethanol extract by the ultrasound-assisted method. We studied their antioxidant activity and catalytic degradation of hazardous dye Direct Orange 26 (DO26) and Direct Blue 15 (DB15). The surface plasmon resonance (SPR) peak of AgNPs was at 428-443 nm. The biogenic AgNPs were approximately 2 nm in size with a regular spherical shape identified from TEM analysis. The ethanol extracts of dried unpeeled ginger and peeled ginger, fresh peeled ginger and ginger peel. The Z. officinale AgNPs synthesized by dried unpeeled ginger ethanol extract showed the best antioxidant activity. Their scavenging activities were significantly better than BHT (p <0.05). The different parts of ginger extracts showed no catalytic degradation activities of DB15 and DO26. Still, the synthesized Z. officinale AgNPs exhibited good catalytic degradation activities, while their ability to catalytic degradation to DB15 was better than DO26. In the additive ratio of 3 mL DB15, 0.1 mL NaBH4 and 0.1 mL AgNPs, the degradation rates of DB15 (or DO26) at 15 min, 30 min and 60 min were only 1.8% (0.9%), 2.8% (1.4%) and 3.5% (1.6%) in the absence of AgNPs. When adding Z. officinale AgNPs prepared from dried ginger peel ethanol extract or fresh ginger peel water extract, the degradation rates of DB15 sharply increased to 97% and 93% after 30 min, respectively. In conclusion, ginger extract has good antioxidant properties. Z. officinale AgNPs biosynthesis from ginger extract exhibit excellent catalytic degradation activities, especially for the ginger peel extract. They have application value in the treatment of textile effluents and provide a new idea and method for the comprehensive development and utilization of ginger resources.

摘要

使用生姜(Zingiber officinale)根的水提取物通过微波照射进行银纳米粒子(AgNPs)的绿色合成及其抗菌活性已经有报道。然而,由不同部分的生姜根水或乙醇提取物通过超声合成制备的 AgNPs 及其抗氧化活性,以及生物合成是否可用于催化还原危险染料尚不清楚。本研究集中于使用不同部分(未去皮姜、去皮姜和姜皮)的生姜根水或乙醇提取物通过超声辅助法简便地绿色合成 AgNPs。我们研究了它们的抗氧化活性和对危险染料直接橙 26(DO26)和直接蓝 15(DB15)的催化降解。AgNPs 的表面等离子体共振(SPR)峰在 428-443nm 处。TEM 分析表明,生物合成的 AgNPs 约为 2nm 大小,呈规则球形。从干燥的未去皮姜、去皮姜、新鲜去皮姜和姜皮的乙醇提取物中合成的 Z. officinale AgNPs 表现出最佳的抗氧化活性。它们的清除活性明显优于 BHT(p<0.05)。不同部分的生姜提取物对 DB15 和 DO26 没有催化降解活性。然而,合成的 Z. officinale AgNPs 表现出良好的催化降解活性,而其对 DB15 的催化降解能力优于 DO26。在添加 3mL DB15、0.1mL NaBH4 和 0.1mL AgNPs 的添加剂比例下,在不存在 AgNPs 的情况下,DB15(或 DO26)在 15min、30min 和 60min 时的降解率分别仅为 1.8%(0.9%)、2.8%(1.4%)和 3.5%(1.6%)。当添加由干燥姜皮乙醇提取物或新鲜姜皮水提取物合成的 Z. officinale AgNPs 时,DB15 的降解率在 30min 后分别急剧增加至 97%和 93%。总之,生姜提取物具有良好的抗氧化性能。由生姜提取物合成的 Z. officinale AgNPs 表现出优异的催化降解活性,特别是对姜皮提取物。它们在处理纺织废水方面具有应用价值,为生姜资源的综合开发利用提供了新的思路和方法。

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