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阳离子聚(亚芳基乙炔)共轭聚电解质的光致和暗态杀菌活性

Light and dark biocidal activity of cationic poly(arylene ethynylene) conjugated polyelectrolytes.

作者信息

Corbitt Thomas S, Ding Liping, Ji Eunkyung, Ista Linnea K, Ogawa Katsu, Lopez Gabriel P, Schanze Kirk S, Whitten David G

机构信息

Center for Biomedical Engineering and Department of Chemical and Nuclear Engineering, University of New Mexico, Albuquerque, NM 87131-0001, USA.

出版信息

Photochem Photobiol Sci. 2009 Jul;8(7):998-1005. doi: 10.1039/b902646k. Epub 2009 Jun 8.

Abstract

In this paper we report a study of cationic poly(arylene ethynylene) conjugated polyelectrolytes. The objective of the study was to compare the behavior of a polymer where a thiophene has replaced a phenyl ring in poly(phenylene ethynylene) polycations (PPE) previously investigated. Properties of solution phase and physisorbed suspensions of the polymer on microspheres were investigated. The photophysical properties of the polymer are evaluated and used to understand the striking differences in biocidal activity compared to the PPE polymers previously examined. The principal findings are that the thiophene polymer has remarkable dark biocidal activity against Pseudomonas aeruginosa strain PAO1 but very little light-activated activity. The low light-activated biocidal activity of the thiophene polymer is attributed to a highly aggregated state of the polymer in aqueous solutions and on microspheres as a physisorbed coating. This results in low triplet yields and a very poor sensitization of singlet oxygen and other reactive oxygen intermediates. The highly effective dark biocidal activity of the thiophene-containing polymers is attributed to its high lipophilicity and the presence of accessible quaternary ammonium groups. The difference in behavior among the polymers compared provides insights into the mechanism of the dark process and indicates that aggregation of polymer can reduce light activated biocidal activity by suppressing singlet oxygen generation.

摘要

在本文中,我们报告了一项关于阳离子聚(亚芳基乙炔)共轭聚电解质的研究。该研究的目的是比较一种聚合物的行为,其中噻吩取代了先前研究的聚(亚苯基乙炔)聚阳离子(PPE)中的苯环。研究了聚合物在微球上的溶液相和物理吸附悬浮液的性质。对聚合物的光物理性质进行了评估,并用于理解与先前研究的PPE聚合物相比,其杀菌活性的显著差异。主要发现是,噻吩聚合物对铜绿假单胞菌PAO1菌株具有显著的暗杀菌活性,但光激活活性非常低。噻吩聚合物的低光激活杀菌活性归因于聚合物在水溶液中和作为物理吸附涂层在微球上的高度聚集状态。这导致三线态产率低,单线态氧和其他活性氧中间体的敏化效果很差。含噻吩聚合物的高效暗杀菌活性归因于其高亲脂性和可及的季铵基团的存在。所比较的聚合物之间行为的差异为暗过程的机制提供了见解,并表明聚合物的聚集可以通过抑制单线态氧的产生来降低光激活杀菌活性。

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