CycloLab Cyclodextrin R&D Laboratory Ltd., Illatos út 7, 1097 Budapest, Hungary.
Department of Applied Biotechnology and Food Science, Budapest University of Technology and Economics, Műegyetem rkp. 3, 1111 Budapest, Hungary.
Int J Mol Sci. 2024 Jun 28;25(13):7139. doi: 10.3390/ijms25137139.
Quorum sensing (QS) allows bacteria to coordinate their activities by producing and detecting low-molecular-weight signal molecules based on population density, thereby controlling the infectivity of bacteria through various virulence factors. Quorum-sensing inhibition is a promising approach to tackle bacterial communication. Cyclodextrins (CDs) are a class of cyclic oligosaccharides that reversibly encapsulate the acyl chain of the signal molecules, thereby preventing their binding to receptors and interrupting bacterial communication. This results in the inhibition of the expression of various properties, including different virulence factors. To examine the potential quorum-quenching (QQ) ability of newly prepared cyclodextrin derivatives, we conducted short-term tests using , a heterotrophic marine bacterium capable of bioluminescence controlled by quorum sensing. α- and β-cyclodextrins monosubstituted with alkylthio moieties and further derivatized with quaternary ammonium groups were used as the test agents. The effect of these cyclodextrins on the quorum-sensing system of was investigated by adding them to an exponential growth phase of the culture and then measuring bioluminescence intensity, population growth, and cell viability. Our results demonstrate that the tested cyclodextrins have an inhibitory effect on the quorum-sensing system of . The inhibitory effect varies based on the length of the alkyl chain, with alkylthio substitution enhancing it and the presence of quaternary ammonium groups decreasing it. Our findings suggest that cyclodextrins can be a promising therapeutic agent for the treatment of bacterial infections.
群体感应 (QS) 允许细菌根据种群密度产生和检测低分子量信号分子,从而通过各种毒力因子控制细菌的感染力。群体感应抑制是一种有前途的解决细菌通讯的方法。环糊精 (CD) 是一类环状低聚糖,可可逆地包裹信号分子的酰基链,从而阻止它们与受体结合并中断细菌通讯。这导致各种特性的表达受到抑制,包括不同的毒力因子。为了研究新制备的环糊精衍生物的潜在群体淬灭 (QQ) 能力,我们使用了一种能够通过群体感应控制发光的异养海洋细菌 进行了短期测试。用烷基硫取代的 α-和 β-环糊精和进一步用季铵基团衍生化的环糊精被用作测试剂。通过在培养物的指数生长期添加这些环糊精并测量生物发光强度、种群生长和细胞活力来研究这些环糊精对 的群体感应系统的影响。我们的结果表明,测试的环糊精对 的群体感应系统具有抑制作用。抑制作用取决于烷基链的长度,烷基硫取代增强了它,而季铵基团的存在则降低了它。我们的研究结果表明,环糊精可能是治疗细菌感染的有前途的治疗剂。