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Interactions of an antimicrobial peptide (Ac-RRWWRF-NH2) and surfactants: Towards antimicrobial peptide additives for coatings applications

机译:抗菌肽(Ac-RRWWRF-NH2)与表面活性剂的相互作用:面向涂料应用的抗菌肽添加剂

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Waterborne coatings are complex formulations containing a number of components to aid stabilization and eventual coalescence of the polymer particles. Almost all systems contain a number of small molecule functional additives to improve different aspects of system performance. How the performance of these additives depends on interaction with other components of the formulation is relatively unexplored from a fundamental basis. A specific objective of this study is to provide a foundation for continued development of antimicrobial peptides as active polymer coatings components. This work addresses the impact of formulation variables, specifically surfactant structure, on the behavior of a model antimicrobial. Antimicrobials are used because a number of microbes are able to flourish within the water phase of the latexes resulting in a loss of properties commonly known as 'spoilage'. The model antimicrobial used in this study is a small oligopeptide (known as Combi1) identified as a powerful antimicrobial and has been extensively studied in the areas of pharmaceutics and medicinal chemistry. Monitoring of antimicrobial strength was done through the use of both conventional microbiology methods and high throughput absorbance and fluorescence measurements. (C) 2006 Published by Elsevier B.V.
机译:水性涂​​料是复杂的配方,其中包含许多成分,以帮助聚合物颗粒稳定化并最终聚结。几乎所有系统都包含许多小分子功能性添加剂,以改善系统性能的不同方面。这些添加剂的性能如何取决于与配方中其他成分的相互作用尚无从根本上探讨的方法。这项研究的一个特定目的是为抗菌肽作为活性聚合物涂料成分的持续开发提供基础。这项工作解决了配方变量(特别是表面活性剂结构)对模型抗菌剂行为的影响。使用抗菌剂是因为许多微生物能够在乳胶的水相中蓬勃发展,从而导致通常称为“腐败”的特性丧失。本研究中使用的模型抗菌素是一种小寡肽(称为Combi1),被认为是一种功能强大的抗菌素,并已在药物学和药物化学领域进行了广泛的研究。通过使用常规的微生物学方法以及高通量吸光度和荧光测量,可以监测抗菌强度。 (C)2006由Elsevier B.V.发布

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