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群体感应的被动控制:印迹聚合物防止铜绿假单胞菌生物膜形成。

Passive control of quorum sensing: prevention of Pseudomonas aeruginosa biofilm formation by imprinted polymers.

机构信息

Cranfield Health, Cranfield University, Cranfield, Bedfordshire MK43 0AL, United Kingdom.

出版信息

Biomacromolecules. 2011 Apr 11;12(4):1067-71. doi: 10.1021/bm101410q. Epub 2011 Mar 1.

Abstract

Here we present the first molecular imprinted polymer (MIP) that is able to attenuate the biofilm formation of the opportunistic human pathogen Pseudomonas aeruginosa through specific sequestration of its signal molecule N-(3-oxododecanoyl)-L-homoserine lactone (3-oxo-C(12)-AHL). The MIP was rationally designed using computational modeling, and its capacity and specificity and that of a corresponding blank polymer toward signal molecule of P. aeruginosa (3-oxo-C(12)-AHL) and its analogue were tested. The biofilm formation in the presence of polymers and without polymers was studied using scanning confocal laser microscopy. Staining with crystal violet dye was used for the quantification of the biofilm formation. A significant reduction of the biofilm growth was observed in the presence of MIP (>80%), which was superior to that of the resin prepared without template, which showed a reduction of 40% in comparison with biofilm, which was grown without polymer addition. It was shown that 3-oxo-C(12)-AHL-specific MIP prevented the development of quorum-sensing-controlled phenotypes (in this case, biofilm formation) from being up-regulated. The developed MIP could be considered as a new tool for the elimination of life-threatening infections in a multitude of practical applications; it could, for example, be grafted on the surface of medical devices such as catheters and lenses, be a component of paints, or be used as a wound adsorbent.

摘要

我们在此展示了第一个能够通过特异性螯合其信号分子 N-(3-氧代十二酰基)-L-高丝氨酸内酯(3-oxo-C(12)-AHL)来减弱机会性病原体铜绿假单胞菌生物膜形成的分子印迹聚合物(MIP)。该 MIP 是通过计算建模进行合理设计的,并对其与相应空白聚合物对铜绿假单胞菌(3-oxo-C(12)-AHL)及其类似物的信号分子的容量、特异性进行了测试。使用扫描共聚焦激光显微镜研究了聚合物存在和不存在时的生物膜形成情况。使用结晶紫染料染色用于生物膜形成的定量。在 MIP(>80%)存在下观察到生物膜生长显著减少,这优于无模板制备的树脂,与没有聚合物添加的生物膜相比,其减少了 40%。结果表明,3-oxo-C(12)-AHL 特异性 MIP 阻止了群体感应控制表型(在这种情况下为生物膜形成)的上调。开发的 MIP 可被视为在多种实际应用中消除危及生命的感染的新工具;例如,它可以接枝到导管和镜片等医疗器械的表面,作为油漆的组成部分,或用作伤口吸附剂。

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