首页> 外文OA文献 >Melatonin-enhanced biosynthesis of antimicrobial AgNPs by improving the phytochemical reducing potential of a callus culture of Ocimum basilicum L. var. thyrsiflora
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Melatonin-enhanced biosynthesis of antimicrobial AgNPs by improving the phytochemical reducing potential of a callus culture of Ocimum basilicum L. var. thyrsiflora

机译:褪黑激素通过提高罗勒叶愈伤组织愈伤组织培养物的植物化学还原潜力来增强抗菌素AgNP的生物合成。锡兰

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摘要

Herein, we describe the green synthesis of silver nanoparticles (AgNPs) using Ocimum basilicum L. var. thyrsiflora leaf derived callus extracts formed in response to 9.0 μM of thidiazuron (TDZ) alone and a combination of 9.0 μM of TDZ + 15 μM of melatonin (Mel) which act both as reducing and stabilizing agents. Based on the phytochemical analysis, the highest total phenolic and flavonoid content were recorded (44.9 mg g−1 DW and 31.5 mg g−1 DW, respectively) in the callus grown on TDZ (9.0 μM) + Mel (15 μM) compared to the TDZ alone (29.8 mg g−1 DW and 17.6 mg g−1 DW, respectively) induced callus. The biosynthesized AgNPs were confirmed by analyzing the excitation of surface plasmon resonance using ultraviolet-visible spectroscopy at 420–430 nm. The synthesized AgNPs were characterized via X-ray diffraction, Fourier transform infrared spectroscopy, transmission electron microscopy, and energy dispersive X-ray spectroscopy, which indicate that more potent antibacterial and antileishmanial activity is displayed by the Mel plus TDZ callus extract mediated AgNPs than the TDZ-only callus extract mediated AgNPs against multiple drug resistant human pathogens and Leishmania major. Determination of the antileishmanial efficacy of AgNPs is a major step towards the development of new compounds containing nanoparticles for leishmaniasis treatment.
机译:在这里,我们描述了使用Ocimum basilicum L. var。的绿色合成的银纳米颗粒(AgNPs)。单独对9.0μM的噻唑隆(TDZ)和9.0μM的TDZ + 15μM的褪黑素(Mel)的组合形成的菊苣叶衍生的愈伤组织提取物,它们既起还原剂的作用,又起稳定剂的作用。根据植物化学分析,在TDZ(9.0μM)+ Mel(15μM)上生长的愈伤组织中,记录的最高总酚和类黄酮含量(分别为44.9 mg g-1 DW和31.5 mg g-1 DW)。单独的TDZ(分别为29.8 mg g-1 DW和17.6 mg g-1 DW)诱导愈伤组织。通过使用420-430 nm的紫外-可见光谱分析表面等离子体激元共振的激发,证实了生物合成的AgNPs。通过X射线衍射,傅立叶变换红外光谱,透射电子显微镜和能量色散X射线光谱对合成的AgNPs进行了表征,这表明Mel + TDZ愈伤组织提取物介导的AgNPs表现出了更强的抗菌和抗菌活性。仅TDZ的愈伤组织提取物介导针对多种耐药性人类病原体和利什曼原虫的AgNPs。 AgNPs的抗疟疾功效的确定是朝着开发用于利什曼病治疗的含有纳米颗粒的新化合物迈出的重要一步。

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