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首页> 外文期刊>Materials science & engineering >Phytosynthesis of gold and silver nanoparticles enhance in vitro antioxidant and mitostimulatory activity of Aconitum toxicum Reichenb. rhizomes alcoholic extracts
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Phytosynthesis of gold and silver nanoparticles enhance in vitro antioxidant and mitostimulatory activity of Aconitum toxicum Reichenb. rhizomes alcoholic extracts

机译:金和银纳米粒子的植物合成增强了毒乌头Reichenb的体外抗氧化剂和线粒体刺激活性。根茎酒精提取物

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Extracts obtained from different plant species proved to be a valuable tool in various biomedical applications. In the same time, the phytosynthesis of noble metal nanoparticles represents an already well-established route for obtaining nanoparticles with biological activity. The present paper studies the antioxidant activity and the cytogenetic effects of the alcoholic extracts from rhizomes ofAconitum toxicumRchb., before and after the phytosynthesis of gold and silver nanoparticles, on the meristematic root cells ofAllium cepaL., and on the general mitotic index and the progression rate through the mitotic phases, respectively, as well as on the genetic material organized in chromosomes. The extracts were characterized in terms of total polyphenolics content (1.49% and, respectively, 2.29%) and aconitine content (by HPLC – 4.891 mg/L and, respectively, 18.211 mg/L), while the phytosynthesis of metallic nanoparticles was monitored by UV–Vis spectrometry, X-ray diffraction, X-ray fluorescence and electron microscopy. Both the extracts and the obtained nanoparticles were evaluated for antioxidant potential (the antioxidant activity ranging between 78% and 84.32%) and cytogenetic effects. The obtained results prove the phytosynthesis of AgNPs and AuNPs with dimensions ranging from 9 nm to 15 nm for AuNPs, respectively from 53 nm to 67 nm for AgNPs. The extracts obtained from rhizomes ofA. toxicumRchb. induced mitotic stress, as well as a series of nuclear and mitotic aberrations. The biosynthesis of AgNPs and AuNPs intensified the antioxidant and mitostimulatory activity of the extracts.
机译:从不同植物物种中提取的提取物被证明是在各种生物医学应用中的有价值的工具。同时,贵金属纳米颗粒的植物合成代表了已经获得的具有生物活性的纳米颗粒的成熟途径。本文研究了金和银纳米粒子的植物合成前后,乌头根茎醇提物的抗氧化活性和细胞遗传学作用对洋葱头皮的分生组织根细胞以及总有丝分裂指数和进展的影响。分别通过有丝分裂期和染色体组织的遗传物质的速率。提取物的特征在于总多酚含量(分别为1.49%和2.29%)和乌头碱含量(通过HPLC – 4.891 4.mg/L和18.211 mg / L),而金属纳米颗粒的植物合成通过紫外可见光谱,X射线衍射,X射线荧光和电子显微镜。评估提取物和所得纳米颗粒的抗氧化潜力(抗氧化活性介于78%和84.32%之间)和细胞遗传学作用。获得的结果证明了AgNPs和AuNPs的植物合成,其中AuNPs的尺寸范围为9 nm至15 nm,AgNPs的尺寸为53 nm至67 nm。从A的根茎获得的提取物。毒物Rchb。引起的有丝分裂压力,以及一系列核和有丝分裂畸变。 AgNPs和AuNPs的生物合成增强了提取物的抗氧化和促丝裂活性。

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