首页> 外文期刊>Journal of applied microbiology >Biogenic synthesis of silver nanoparticles mediated by the consortium comprising the marine fungal filtrates of Penicillium oxalicum and Fusarium hainanense along with their antimicrobial, antioxidant, larvicidal and anticancer potency
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Biogenic synthesis of silver nanoparticles mediated by the consortium comprising the marine fungal filtrates of Penicillium oxalicum and Fusarium hainanense along with their antimicrobial, antioxidant, larvicidal and anticancer potency

机译:由草酸青霉和海南镰刀菌海洋真菌滤液及其抗菌、抗氧化、杀幼虫和抗癌效力组成的联盟介导的银纳米颗粒的生物合成

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摘要

Abstract Aim To biosynthesize silver nanoparticles (AgNPs) using fungal isolates DS‐2 (Penicillium oxalicum) and DW‐8 (Fusarium hainanense) as well as their mixed cell‐free filtrate (CFF) acting as a consortium (DSW‐28) and their bio‐potentials. Methods and Results The fungi (DS‐2 and DW‐8) were harvested and CFF was prepared. CFF of each fungus and their mixture were reacted with silver nitrate solution under dark conditions for the synthesis of AgNPs. The UV–Visible spectra determined the surface plasmon resonance at 438, 441 and 437 nm for the AgNPs synthesized by DS‐2, DW‐8 and DSW‐28, respectively. The band gap energy was found between 2.21 and 2.24 eV which depicted their ability to act as a semiconductor. The TEM imaging revealed the spherical shape and small size of AgNPs. The XRD pattern exhibited the crystalline structure corresponding to their peaks. The FTIR spectra indicate the presence of different functional groups present on the surface of AgNPs. The broad‐spectrum antimicrobial activity was exhibited by AgNPs. The AgNPs also act as an effective antioxidant by depicting their radical scavenging activity against DPPH. Moreover, the AgNPs also inhibited the growth of fourth instar larvae of Aedes aegypti and Culex quinquefasciatus more efficiently in a dose‐dependent method. The biosynthesized AgNPs from DSW‐28 showed a significant anticancer activity against MCF‐7 cells. Conclusion The silver nanoparticles synthesized by the CFF of two different fungi act synergistically in a consortium leading towards the production of silver nanoparticles with smaller size and higher bioactivity. Significance and Impact of the Study The impressive bioactivity of the silver nanoparticles synthesized by the mixture of CFF of various fungi acting as a consortium recommends their prospective use in agriculture as well as in biomedical as an antimicrobial, antioxidant, larvicidal and anticancer agents in future.
机译:摘要 目的 利用真菌分离株[草酸青霉(Penicillium oxalicum)和海南镰刀菌(DW-8)]及其混合游离滤液(CFF)组成联合体(DSW-28)及其生物势,生物合成银纳米颗粒(AgNPs)。方法与结果 收获真菌(DS-2和DW-8)并制备CFF。将各真菌及其混合物的CFF与硝酸银溶液在黑暗条件下反应合成AgNPs。紫外-可见光谱分别测定了DS-2、DW-8和DSW-28合成的AgNPs在438、441和437 nm处的表面等离子体共振。在 2.21 和 2.24 eV 之间发现带隙能量,这描述了它们充当半导体的能力。透射电镜成像显示AgNPs呈球形,尺寸较小。XRD图谱显示出与其峰相对应的晶体结构。傅里叶变换红外光谱表明AgNPs表面存在不同的官能团。AgNPs表现出广谱抗菌活性。AgNPs还通过描述其对DPPH的自由基清除活性来充当有效的抗氧化剂。此外,AgNPs还以剂量依赖性方法更有效地抑制了埃及伊蚊和库蚊四龄幼虫的生长。DSW-28 生物合成的 AgNPs 对 MCF-7 细胞具有显著的抗癌活性。结论 两种不同真菌的CFF合成的银纳米颗粒协同作用,形成一个联盟,可生产出更小尺寸、更高生物活性的纳米银颗粒。该研究的意义和影响 由各种真菌的CFF混合物合成的银纳米颗粒的生物活性令人印象深刻,这表明它们在未来作为抗菌剂、抗氧化剂、杀幼虫剂和抗癌剂在农业和生物医学中具有前瞻性。

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