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Size and Shape-Dependent Antimicrobial Activities of Silver and Gold Nanoparticles: A Model Study as Potential Fungicides

机译:银和金纳米粒子的大小和形状相关的抗菌活性:作为潜在杀菌剂的模型研究

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摘要

Plant-based pathogenic microbes hinder the yield and quality of food production. Plant diseases have caused an increase in food costs due to crop destruction. There is a need to develop novel methods that can target and mitigate pathogenic microbes. This study focuses on investigating the effects of luteolin tetraphosphate derived silver nanoparticles (LTP-AgNPs) and gold nanoparticles (LTP-AuNPs) as a therapeutic agent on the growth and expression of plant-based bacteria and fungi. In this study, the silver and gold nanoparticles were synthesized at room temperature using luteolin tetraphosphate (LTP) as the reducing and capping agents. The synthesis of LTP-AgNPs and LTP-AuNP was characterized by Transmission Electron Microscopy (TEM) and size distribution. The TEM images of both LTP-AgNPs and LTP-AuNPs showed different sizes and shapes (spherical, quasi-spherical, and cuboidal). The antimicrobial test was conducted using fungi: , and while the class of bacteria employed include , , and as Gram (−) bacteria, and as Gram (+) bacterium. The antifungal study demonstrated the selective size and shape-dependent capabilities in which smaller sized spherical (9 nm) and quasi-spherical (21 nm) AgNPs exhibited 100% inhibition of the tested fungi and bacteria. The LTP-AgNPs exhibited a higher antimicrobial activity than LTP-AuNPs. We have demonstrated that smaller sized AgNPs showed excellent inhibition of growth compared to the larger size nanoparticles. These results suggest that LTP-AuNP and LTP-AgNPs could be used to address the detection and remediation of pathogenic fungi, respectively.
机译:植物性致病微生物会阻碍食品的产量和质量。由于作物受到破坏,植物病害导致粮食成本增加。需要开发可以靶向和减轻病原微生物的新颖方法。这项研究专注于研究木犀草素四磷酸衍生的银纳米颗粒(LTP-AgNPs)和金纳米颗粒(LTP-AuNPs)作为治疗剂对植物性细菌和真菌的生长和表达的影响。在这项研究中,银和金纳米粒子是在室温下使用木犀草素四磷酸酯(LTP)作为还原剂和封端剂合成的。 LTP-AgNPs和LTP-AuNP的合成通过透射电子显微镜(TEM)和大小分布进行了表征。 LTP-AgNPs和LTP-AuNPs的TEM图像显示出不同的大小和形状(球形,准球形和长方体)。抗菌测试是使用真菌进行的,而使用的细菌种类包括,和,如革兰氏(-)细菌和革兰氏(+)细菌。抗真菌研究证明了选择性大小和形状依赖性功能,其中较小尺寸的球形(9 nm)和准球形(21 nm)AgNP对测试的真菌和细菌表现出100%的抑制作用。 LTP-AgNPs表现出比LTP-AuNPs高的抗菌活性。我们已经证明,与较大尺寸的纳米颗粒相比,较小尺寸的AgNPs具有优异的生长抑制作用。这些结果表明,LTP-AuNP和LTP-AgNPs可分别用于解决病原真菌的检测和修复。

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