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2(5H)-Furanone: A Prospective strategy for biofouling-control in membrane biofilm bacteria by quorum sensing inhibition

机译:2(5H)-呋喃酮:通过群体感应抑制控制膜生物膜细菌生物结垢的前瞻性策略

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摘要

Biofouling of membranes demands costly periodic cleaning and membrane replacement. A sustainable and environmentally friendly solution for maintenance is not available and would be of great interest for many purposes including economical. As complex biofilm formation by environmental strains is the major cause of biofouling and biofilm formation in most cases are controlled by N-Acylhomoserine lactone (AHL)-mediated Quorum Sensing (QS). An effort was made to understand the appropriateness of 2(5H)-furanone, to use against biofouling of membranes. QS inhibition activity by 2(5H)-furanone was studied using bioindicator strains and known AHL of different acyl chain lengths. The biofilm inhibition was studied by growth analysis on polystyrene plate of Aeromonas hyrdrophila, an environmental biofilm strain isolated from a bio-fouled reverse osmosis (RO) membrane. Results showed a QS inhibition activity against a wide range of AHLs and also biofilm formation by 2(5H)-furanone, which is believed to act as a potential quorum inhibition agent in a bacterial biofilm community.
机译:膜的生物污染需要昂贵的定期清洁和膜更换。没有可持续的,对环境友好的维护解决方案,它将对许多目的(包括经济目的)引起极大兴趣。由于环境菌株形成复杂的生物膜是生物结垢的主要原因,因此在大多数情况下,生物膜的形成受N-酰基高丝氨酸内酯(AHL)介导的群体感应(QS)的控制。努力了解2(5H)-呋喃酮是否适合用于膜的生物污染。使用生物指示剂菌株和不同酰基链长度的已知AHL研究了2(5H)-呋喃酮对QS的抑制活性。通过对嗜水气单胞菌(Aeromonas hyrdrophila)的聚苯乙烯平板进行生长分析来研究生物膜抑制作用,这是一种从生物污染的反渗透(RO)膜中分离出来的环境生物膜菌株。结果显示,QS对多种AHL均具有抑制活性,并且2(5H)-呋喃酮还可以形成生物膜,而后者被认为是细菌生物膜群落中潜在的群体抑制剂。

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