Antifungal Coating Based on Pyocyanin Nanoparticles (Np-Pyo)

Jonas da Silva, I. P. G. do Amaral, Elisângela Afonso de Moura Kretzschmar, U. Vasconcelos
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引用次数: 1

Abstract

Pyocyanin is a pigment produced by 95% of Pseudomonas aeruginosa strains and exhibits antimicrobial properties that can be used for different purposes. In this work, PMMA-based nanoparticles that were encapsulated into 200 µg/mL of pyocyanin (Np-Pyo) were produced by the nanoprecipitation method. They were evaluated with respect to antifouling activity against Aspergillus sp. and Penicillium sp. With an encapsulation efficiency of 56%, the NpPyo remained stable for 90 days. Their characteristics were satisfactory for the following parameters: average size (616.90±38.30 nm; blank: 282.58±22.89 nm), polydispersion index (0.51±0.01; blank: 0.45±0.78), zeta potential (-5.13±0.41 mV; blank: -6.44±1.12 mV) and pH (6.18±0.03; blank: 6.42±0.01). The in vitro biofilm formation assay was performed on dolomite coupons measuring 1 cm2, on which the formulation was applied. There were tested conditions with and without immersion for 72h at 30 ºC. In the tests with the immersed coupons, there was fungal colonization; this was, however, lower than that observed in the control. A. niger decreased by 3 log units. No growth was observed on the coupons that were not immersed. The results were promising and demonstrated viability as a means of antifouling protection, particularly on dry surfaces.
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基于酞菁纳米粒子(Np-Pyo)的抗菌涂料
花青素是95%的铜绿假单胞菌产生的一种色素,具有抗菌性能,可用于不同用途。在这项工作中,通过纳米沉淀法生产了包封在200µg/mL绿脓蛋白(Np-Pyo)中的PMMA基纳米颗粒。评估了它们对曲霉属和青霉属的防污活性。NpPyo的包封效率为56%,在90天内保持稳定。它们的特征在以下参数方面是令人满意的:平均尺寸(616.90±38.30nm;空白:282.58±22.89nm)、多分散指数(0.51±0.01;空白:0.45±0.78)、ζ电位(-51.3±0.41mV;空白:-6.44±1.12 mV)和pH(6.18±0.03;空白:6.42±0.01),该制剂应用于其上。在30ºC下,有和没有浸泡72小时的测试条件。在使用浸渍试样的测试中,存在真菌定植;然而,这比对照组中观察到的要低。黑曲霉减少了3个对数单位。在未浸泡的优惠券上未观察到增长。结果是有希望的,并证明了作为防污保护手段的可行性,特别是在干燥表面上。
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