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Label-Free Critical Micelle Concentration Determination of Bacterial Quorum Sensing Molecules

机译:细菌群体感应分子的无标签临界胶束浓度测定

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摘要

A practical label-free method for the rapid determination of small-molecule critical micelle concentration (CMC) using a fixed-angle light-scattering technique is described. Change in 90° light scattering at a fixed wavelength of incident radiation with increasing bacterial quorum molecule concentration and the observation of a break point is used to determine CMC. In our study, this technique is utilized to investigate the aqueous CMC of previously uncharacterized Pseudomonas aeruginosa quorum sensing signaling molecules (QSSM) belonging to the n-acylhomoserine lactone and 2-alkyl-4-quinolone classes. Several were found to form micelles within a physiologically relevant concentration range and potential roles of these micelles as QSSM transporters are discussed. The influence of temperature and the presence of biological membranes or serum proteins on QSSM CMC are also investigated and evidence is obtained to suggest the QSSMs studied are capable of both membrane and serum protein interaction. This demonstrates that the fixed-angle light-scattering technique outlined can be used simply and rapidly to determine small-molecule CMC under a variety of conditions.
机译:描述了一种实用的无标记方法,该方法使用固定角度光散射技术快速测定小分子临界胶束浓度(CMC)。随着细菌群体分子浓度的增加,入射辐射在固定波长处的90°光散射变化以及观察到的断裂点可用于确定CMC。在我们的研究中,该技术用于研究属于n-酰基高丝氨酸内酯和2-烷基-4-喹诺酮类的以前未表征的铜绿假单胞菌群体感应信号分子(QSSM)的水性CMC。发现有几种在生理相关浓度范围内形成胶束,并讨论了这些胶束作为QSSM转运蛋白的潜在作用。还研究了温度以及生物膜或血清蛋白的存在对QSSM CMC的影响,并获得了证据表明所研究的QSSM能够同时进行膜蛋白和血清蛋白相互作用。这表明,概述的固定角光散射技术可在各种条件下简单快速地用于测定小分子CMC。

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