首页> 外文期刊>Journal of cluster science >Cullen corylifolium (L.) Medik. Seed Extract, an Excellent System For Fabrication of Silver Nanoparticles and Their Multipotency Validation Against Different Mosquito Vectors and Human Cervical Cancer Cell Line
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Cullen corylifolium (L.) Medik. Seed Extract, an Excellent System For Fabrication of Silver Nanoparticles and Their Multipotency Validation Against Different Mosquito Vectors and Human Cervical Cancer Cell Line

机译:Corylifolium(L.)Medik。 种子提取物,一种优异的制造银纳米粒子的优异系统及其对不同蚊子载体和人宫颈癌细胞的多能验证

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摘要

Development of therapeutic drugs for mosquito control and cancer is the need of the hour. This study highlights the fabrication of silver nanoparticles by incubating 45 ml of AgNO3 (0.5 mM) solution with 5 ml of Cullen corylifolium aqueous green seed extract at 60 +/- 2 degrees C, 9 pH for 90 min. Ultraviolet-visible spectroscopy confirmed the synthesis of AgNPs by observing the absorption peak at 422 nm. Crystallographic nature of AgNPs was proved by XRD spectrum. FE-SEM images exhibited that most of AgNPs were spherical in shape with 20-60 nm average size. FT-IR spectrum revealed the existence of secondary metabolites that were involved in the reduction, stabilization and capping of AgNPs. The synthesized AgNPs exhibited the strong bioefficacy against the 3rd instar larvae of Anopheles stephensi (LC50, 6.03; LC90, 10.86 ppm), Aedes aegypti (LC50, 8.29; LC90, 13.75 ppm) and Culex quinquefasciatus (LC50, 16.55; LC90, 36.81 ppm) after 72 h of exposure. The AgNPs also exhibited strong anti-cancer activity having IC50 value 1.129 mu g/ml after 24 h. These were proved to be non-toxic against non-target organism and normal cell line. These results suggest that synthesized AgNPs have strong larvicidal and anti-cancer potential and thus can be employed in cancer therapy, targeted drug delivery and drug designing.
机译:蚊子控制和癌症治疗药物的发展是时刻的需求。该研究突出了通过将45ml的AgNO3(0.5mM)溶液孵育5ml Cullen Corylifolium含水绿色种子提取物,在60 +/- 2℃,9 pH下培养为银纳米颗粒的制造90分钟。紫外 - 可见光光谱通过观察422nm的吸收峰证实了AgNP的合成。通过XRD光谱证明了AgNP的结晶性质。 FE-SEM图像表现出大部分AgNP的形状为20-60nm平均尺寸。 FT-IR光谱揭示了涉及减少,稳定和粘接AgNP的次级代谢物的存在。合成的agnps对砧座斯蒂芬(LC50,6.03; LC90,110.86,10.86 ppm),AEDESAEGYPTI(LC50,8.29; LC90,13.75 ppm)和Culex Quinquefasciatus(LC50,16.55; LC90,36.81PPM )暴露72小时后。 AgNPS还表现出强烈的抗癌活性,24小时后具有IC50值1.129μg/ ml。被证明是对非靶毒性和正常细胞系无毒。这些结果表明,合成的AgNP具有强烈的幼稚癌和抗癌潜力,因此可以用于癌症治疗,靶向药物递送和药物设计。

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