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首页> 外文期刊>Bulletin of materials science >Nano-cubes over nano-spheres: shape dependent study of silver nanomaterial for biological applications
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Nano-cubes over nano-spheres: shape dependent study of silver nanomaterial for biological applications

机译:纳米球体上的纳米立方体:形状依赖性研究银纳米材料进行生物应用

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Silver nanomaterials (AgNMs) ubiquitously known for their biological applications are studied here in terms of their shape-dependent antibacterial and anti-biofilm effect. Chemically synthesized nano-cubes (AgNCs) with size range around 150–200 nm were compared for their biological activity with commercial nano-sphere (AgNS) of comparable size (${sim}$160 nm). The antibacterial activity against both Escherichia coli and Staphylococcus aureus showed higher activity for nano-cubes compared with nano-spheres.The synergistic role of AgNMs with antibiotic ampicillin was also found promising. A four times enhancement and an increase of nearly 25% of antibiotic activity at 0.0625 mg ml$^{–1}$ concentration was found with 0.05 mg ml$^{–1}$ of AgNCs in agar and broth media, respectively. Anti-biofilm effect towards E. coli and S. aureus was also evaluated. AgNCs showed equal importance in biofilm disruption with 20% inhibition activity, which was yet again found better in-comparison with AgNSs. The study shows that AgNCs with distinct faces and edges could show efficient anti-bacterial effect and so such intelligently designed material could pave path for imminent medical challenges.
机译:本文在其形状依赖性抗菌和抗生物膜效应方面研究了普遍已知的银纳米材料(AGNMS)。将化学合成的纳米立方体(AGNC)与其与商业纳米球(AGNS)的生物活性进行比较约为150-200nm,与商业纳米球(AGNS)相当大小($ { SIM} 160 nm)。与纳米球体相比,对对大肠杆菌和金黄色葡萄球菌的抗菌活性显示出纳米立方体的较高活性。有前景也有前途的纳米球菌与抗生素氨苄青霉素的协同作用。 4倍的增强和增加近25%的抗生素活性为0.0625mg / 1× - 1} $浓度,分别以琼脂和肉汤中的0.05mg ml $ ^ {-1}美元的agncs发现。还评估了对大肠杆菌和金黄色葡萄球菌的抗生物膜作用。 AGNC在生物膜中断的同等重视与20%的抑制活动中的破坏,又称与AGNSs相比更好地发现。该研究表明,具有不同面孔和边缘的AGNC可以显示出有效的抗细菌效果,因此如此智能设计的材料可以铺设迫在眉睫的医疗挑战。

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