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A New Class of Gold Nanoantibiotics- Direct Coating of Ampicillin on Gold Nanoparticles

机译:一类新的金纳米抗生素-在金纳米粒子上直接涂覆氨苄青霉素

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摘要

Need for novel, innovative strategies for developing antibiotics is becoming a necessity due to an increasing number of rapidly evolving micro-organismal threats. Antibiotic encapsulated gold nanoparticles (GNPs) are one such strategy showing promise. We report the development of ampicillin encapsulated gold nanoparticles (Amp-GNPs) that possess highly effective, dose dependant antibacterial activity. In this method, ampicillin molecules have been coated on individual GNPs which can then serve as drug carrier devices. Our method for synthesizing Amp-GNPs is an entirely ecofriendly, single step reaction taking place in an aqueous buffer. Following characterization of Amp-GNPs, we find them to be ~15 nm in diameter and spherical in shape. We have tested the antibacterial activity of Amp-GNPs against multiple strains of bacteria, both Gram-positive and Gram-negative, and have found Amp-GNPs to be highly efficient against all tested strains. By examining the mechanism of Amp-GNPs antibacterial activity, it was determined that Amp-GNPs disrupt the bacterial cells membrane when coming into contact with the cells, thus disturbing the cell equilibrium, leading to cell lysis or necrosis. Amp-GNPs have been shown to exhibit significant potential and ability to enter the medical field's arsenal to fight infectious disease.
机译:由于越来越多的快速发展的微生物威胁,对开发抗生素的新颖,创新策略的需求正变得越来越必要。抗生素封装的金纳米颗粒(GNP)是一种显示出希望的策略。我们报道了具有高效,剂量依赖性抗菌活性的氨苄青霉素包封的金纳米颗粒(Amp-GNPs)的发展。在这种方法中,氨苄青霉素分子已被涂在单个GNP上,然后可以用作药物载体。我们合成Amp-GNP的方法是完全环保的一步反应,在水性缓冲液中进行。在对Amp-GNP进行表征后,我们发现它们的直径约为15 nm,球形。我们已经测试了Amp-GNPs对多种革兰氏阳性和革兰氏阴性细菌的抗菌活性,并且发现Amp-GNPs对所有测试菌株都非常有效。通过检查Amp-GNPs抗菌活性的机制,可以确定Amp-GNPs与细胞接触时会破坏细菌细胞膜,从而破坏细胞平衡,导致细胞溶解或坏死。已证明Amp-GNP具有显着的潜力和能力,可以进入医学领域的武器库抵抗传染病。

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