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‘Hairy’ root extracts as source for ‘green’ synthesis of silver nanoparticles and medical applications

机译:'毛茸茸的根提取物作为“绿色”的银纳米粒子和医疗应用的源

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The research was focused on the synthesis of silver nanoparticles (AgNPs) using extracts from the “hairy” root cultures of Artemisia tilesii Ledeb. and Artemisia annua L. The effect of operational parameters such as type of solvent, temperature of extraction, flavonoids concentration, and reducing power of the wormwood “hairy” root extracts on the particle size and yield of the resultant nanoparticles is reported for the first time. From the studied solvents, a water–ethanol mixture with a concentration of 70 vol% was found to be the best for the extraction of flavonoids from all “hairy” root cultures. The total flavonoid contents in A. annua and A. tilesii “hairy” root extracts were up to 80.0 ± 0.9 and 108 ± 4.4 mg RuE per g DW, respectively. Identification of flavonoids was confirmed by UPLC-ESI-UHR-Qq-TOF-MS analysis. Luteolin-7-β- D -glucopyranosid, isorhamnetin 3- O -glucoside, baicalein-7- O -glucuronide, apigenin-7- O -glucoside, quercetin, sitosterol, caffeoylquinic, galic, chlorogenic and caffeic acids were founded in the extracts. These extracts demonstrated the high reducing activities. Spherical, oval and triangular nanoparticles with effective sizes of 5–100 nm were observed. The TEM data revealed great differences in the shapes of NPs, obtained from the extracts from different root clones. The clustered and irregular NPs were found in the case of using ethanol extracts, mostly aggregated and having the size of 10–50 nm. The sizes of AgNPs decreased to 10–30 nm in the case of using aqueous extracts obtained at 80 °C. Biosynthesized AgNPs showed surface plasmon resonance in the range of 400–450 nm. The antimicrobial activity of the as-produced AgNPs was studied by disc diffusion method on Gram-positive ( Staphylococcus aureus ATCC 25923 (F-49)), Gram-negative ( Pseudomonas aeruginosa ATCC 27853 (F-51), Escherichia coli ATCC 25922 (F-50)) and Candida albicans ATCC 88-653 strains. It was found that the nanoparticles in some cases possessed the greater ability to inhibit microorganism growth compared to 1 mM AgNO _(3) solution. The colloidal solutions of the obtained AgNPs were stable in the dark for 12 months at room temperature. Thus, the A. annua and A. tilesii “hairy” root extracts can be used for obtaining of bioactive AgNPs.
机译:该研究专注于使用来自“毛茸茸的”TIXESII LADEB的“毛状”根培养物的萃取物合成银纳米颗粒(AGNP)。和Artemisia Annua L.首次报道了操作参数如溶剂类型,提取的温度,黄酮类化合物的浓度,黄酮类化合物的效果,并在所得纳米颗粒的粒度和产率的粒度上报告。从研究的溶剂中,发现浓度为70体积%的水 - 乙醇混合物是最适合从所有“毛茸茸”根培养物中的黄酮类化合物。 A. Annua和A. Tilesii“毛状”根提取物的总异形含量分别高达80.0±0.9和108±4.4mg / 108±4.4mg rue。通过UPLC-ESI-UHR-QQ-TOF-MS分析证实了黄酮类化合物的鉴定。在提取物中,成立于提取物中的叶氏素-7-β-D葡糖苷,Isorhamnetin 3-O-葡萄糖,Baciphein-7-O-葡糖苷,槲皮素,谷粒醇,咖啡酰基,GaliC,绿原和咖啡酸。 。这些提取物证明了高减少活性。观察到具有5-100nm的有效尺寸的球形,椭圆形和三角形纳米颗粒。 TEM数据显示了从来自不同根克隆的提取物获得的NP的形状差异。在使用乙醇提取物的情况下发现聚类和不规则的NPS,大多数聚集并具有10-50nm的尺寸。在使用在80℃下获得的水性提取物的情况下,AgNP的尺寸降低至10-30nm。生物合成的agnps在400-450nm的范围内显示出表面等离子体共振。通过革兰阳性的圆盘扩散法研究了原制AgNP的抗微生物活性(金黄色葡萄球菌ATCC 25923(F-49)),克阴性(假单胞菌铜绿假单胞菌ATCC 27853(F-51),大肠杆菌ATCC 25922( F-50)))和念珠菌Albicans ATCC 88-653菌株。发现纳米颗粒在某些情况下具有更高的抑制微生物生长的能力与1mM AgNo _(3)溶液相比。所得AgNP的胶体溶液在室温下在黑暗中稳定12个月。因此,A.Anua和A.Tilesii“毛状”根提取物可用于获得生物活性AgNP。

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