Antimicrobial and Antioxidant Potential of Silver Nanoparticles Synthesized from Primula vulgaris

B. Erdem, Harun Çiftçi, Yunus Şahin
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Abstract

In this study, biosynthesis and in vitro phytochemical composition, antibacterial and antioxidant activities of silver nanoparticles were investigated by using aqueous leaf, flower and root extracts of Primula vulgaris (P. vulgaris subsp. vulgaris). The synthesized silver nanoparticles (AgNPs) were confirmed by color conversion and ultraviolet-visible (UV-visible) spectrophotometry. The appearance of a dark brown color and a UV absorption spectrum range at 440 nm confirmed the synthesized silver nanoparticles. The antimicrobial activity of silver nanoparticles synthesized from the leaf of P. vulgaris; S. aureus 25±1, S. epidermidis 20±1, P. aeruginosa 20±1, A. hydrophila 21±1, C. albicans 25±1, C. tropicalis 25±1, C. parapsilosis 22±1 and C. glabrata 20±1 mm zone diameter was determined. The most antimicrobial effect of P. vulgaris leaf aqueous extract; S. aureus 20±1, S. epidermidis 18±1, A.hydrophila 15±1, P. aeruginosa 12±2, C. albicans 18±1, C. glabrata 18±1, C.tropicalis15±2, and C. parapsilosis 15±2 mm zone diameter was revealed. The presence of flavonoids, terpenoids, protein, and carbohydrates was found to be higher in silver nanoparticles synthesized in the flower part of P. vulgaris, according to phytochemical screening. While saponins were detected in P. vulgaris root extracts, tannins and protein were detected in the leaf extract. The flower had the highest total phenolic extract content of the silver nanoparticle (29.08±0 mg GAE/g DW), while the leaf and root had the lowest total phenolic content of 9.06±0.5 and 8.64±3.3 mg GAE/g DW, respectively. The flower had the highest total phenolic extract content of the plant aqueous extracts (25.10±0.2 mg GAE/g DW), while the leaf and root had the lowest (8.28±0.5 and 5.20±0.0 mg GAE/g DW, respectively).The DPPH (1,1-Diphenyl-2-picrylhydrazil) assay was used to assess free radical scavenging activity. The antioxidant activity of AgNPs biosynthesized using P. vulgaris flower extract was 90.6 %, while P. vulgaris flower aqueous extracts were 86.3 %. This can be concluded that silver nanoparticles synthesized using P. vulgaris flower extract are useful in the preparation of pharmacologically useful drugs.
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报春花合成银纳米粒子的抗菌和抗氧化潜力
以报春花(Primula vulgaris, P. vulgaris subsp)叶片、花和根的水提液为原料,研究了银纳米颗粒的生物合成、体外植物化学组成、抗菌和抗氧化活性。寻常的)。合成的银纳米粒子(AgNPs)通过颜色转换和紫外可见分光光度法得到证实。深棕色的外观和440 nm的紫外吸收光谱范围证实了合成的纳米银。乌桕叶合成纳米银的抗菌活性研究测定金黄色葡萄球菌(25±1)、表皮葡萄球菌(20±1)、铜绿假单胞菌(20±1)、嗜水假单胞菌(21±1)、白色假单胞菌(25±1)、热带假单胞菌(25±1)、傍孢假单胞菌(22±1)、光秃假单胞菌(20±1mm)带直径。凡士林叶水提物抑菌效果最好;金黄色葡萄球菌20±1,表皮葡萄球菌18±1,嗜水葡萄球菌15±1,铜绿假单胞菌12±2,白色葡萄球菌18±1,光秃葡萄球菌18±1,热带葡萄球菌15±2,傍绿葡萄球菌15±2。根据植物化学筛选,发现在寻常花部分合成的银纳米颗粒中黄酮类、萜类、蛋白质和碳水化合物的含量较高。根提取物中检测到皂苷,叶提取物中检测到单宁和蛋白质。银纳米颗粒总酚含量最高的部位为花(29.08±0 mg GAE/g DW),最低的部位为叶(9.06±0.5 mg GAE/g DW)和根(8.64±3.3 mg GAE/g DW)。花的总酚含量最高(25.10±0.2 mg GAE/g DW),叶和根的总酚含量最低(分别为8.28±0.5和5.20±0.0 mg GAE/g DW)。采用DPPH(1,1-二苯基-2-苦味肼)测定法评估自由基清除活性。菝葜花提取物生物合成AgNPs的抗氧化活性为90.6%,菝葜花水提取物生物合成AgNPs的抗氧化活性为86.3%。由此可见,以荆芥花提取物为原料合成的银纳米颗粒可用于制备具有药理作用的药物。
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