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Enhanced biocidal activity of Au nanoparticles synthesized in one pot using 2, 4-dihydroxybenzene carbodithioic acid as a reducing and stabilizing agent

机译:使用2,4-二羟基苯碳二硫酸作为还原剂和稳定剂,在一锅中合成的Au纳米颗粒具有增强的杀菌活性

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摘要

BackgroundThe conjugation of gold nanoparticles with biocides such as natural products, oligosaccharides, DNA, proteins has attracted great attention of scientists recently. Gold NPs covered with biologically important molecules showed significant enhancement in biological activity in comparison with the activity of the free biocides. However, these reports are not very systematic and do not allow to draw definitive conclusions. We therefore embarked in a systematic study related to the synthesis and characterization of biocidal activities of Au nanoparticles conjugated to a wide variety of synthetic and natural biomolecules. In this specific report, we investigated the activity of a synthetic biocide, 2-4, Dihydroxybenzene carbodithioic acid (DHT). ResultsAu nanoparticles (NP) with a mean size of about 20 nm were synthesized and functionalized in one pot with the help of biocide 2,4-Dihydroxybenzene carbodithioic acid (DHT) to reduce HAuCl4 in aqueous solution. Conjugation of DHT with gold was confirmed by FT-IR and the amount of DHT conjugated to the Au nanoparticles was found to be 7% by weight by measuring the concentration of DHT in the supernatant after centrifugation of the Au NPs. To ascertain the potential for in vivo applications, the stability of the suspensions was investigated as a function of pH, temperature and salt concentration. Antibacterial, antifungal, insecticidal and cytotoxic activities of the Au-DHT conjugates were compared with those of pure DHT and of commercially available biocides. In all cases, the biocidal activity of the Au-DHT conjugates was comparable to that of commercial products and of DHT. ConclusionsSince the DHT concentration in the Au-DHT conjugates was only about 7%, our results indicate that conjugation to the Au NPs boosts the biocidal activity of DHT by about 14 times. The suspensions were found to be stable for several days at temperatures of up to 100°C, salt concentrations up to 4 mol/L and a pH range of 2-13.
机译:背景技术金纳米颗粒与杀生物剂(例如天然产物,寡糖,DNA,蛋白质)的结合最近引起了科学家的极大关注。与游离生物杀伤剂的活性相比,被生物重要分子覆盖的金纳米颗粒显示出显着的生物活性增强。但是,这些报告不是很系统,不能得出明确的结论。因此,我们着手进行了与金纳米颗粒的杀生物活性的合成和表征有关的系统研究,所述金纳米颗粒与多种合成和天然生物分子缀合。在此特定的报告中,我们研究了合成的杀菌剂2-4二羟基苯碳二硫代酸(DHT)的活性。结果在杀菌剂2,4-二羟基苯碳二硫酸(DHT)的帮助下,在一个锅中合成了平均粒径约为20 nm的Au纳米颗粒(NP)并进行了功能化,以减少水溶液中的HAuCl4。通过FT-IR确认DHT与金的缀合,并且通过测量Au NPs离心后上清液中DHT的浓度,发现缀合至Au纳米颗粒的DHT的量为7重量%。为了确定体内应用的潜力,研究了悬浮液的稳定性随pH,温度和盐浓度的变化。将Au-DHT缀合物的抗菌,抗真菌,杀虫和细胞毒性活性与纯DHT和市售杀生物剂的抗菌,抗真菌,杀虫和细胞毒性活性进行了比较。在所有情况下,Au-DHT缀合物的杀生物活性均与商业产品和DHT相当。结论由于Au-DHT缀合物中DHT的浓度仅为7%左右,因此我们的结果表明与Au NPs的缀合将DHT的杀菌活性提高了约14倍。发现该悬浮液在高达100°C的温度,高达4 mol / L的盐浓度和2-13的pH范围内稳定几天。

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