Xanthene Derivatives Targeting Bacterial Efflux Pumps, Quorum-Sensing, and Biofilm Formation

M. Maia, Fernando Durães, D. Resende, Nikoletta Szemerédi, L. Gales, Paulo Martins-da-Costa, M. Pinto, G. Spengler, E. Sousa
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引用次数: 1

Abstract

The rise of multidrug resistance (MDR) bacteria in nosocomial and health-care institutions is widespread and is currently recognized as a major medical challenge. Mechanisms of bacterial resistance, namely, quorum sensing (QS), biofilm formation, and efflux pumps, have been identified as critical biological processes in MDR bacteria. Following previous reports on the activity of phenothiazines against mechanisms of bacterial resistance, in this work we focus on the synthesis of xanthene derivatives aiming to discover phenothiazine bioisosteres with improved activity. Four compounds were obtained from the conjugation of xanthydrol with sulfonamides and aniline and were fully characterized. Their antibacterial activity was assessed considering their minimum inhibitory concentration (MIC) against Gram-positive and Gram-negative strains, efflux pump inhibition, influence on biofilm formation and quorum-sensing (QS) inhibition. It was observed that the MIC of all the tested compounds was above 64 µg/mL The four 9-xanthenyl derivatives obtained, particularly the xanthene sulfonamide derivatives 3b and 3c, showed promising results on QS inhibition with a reduction of pigment production of 48 and 41 mm, and on biofilm formation with a reduction of 78 and 79%, respectively.
针对细菌外排泵、群体感应和生物膜形成的杂蒽衍生物
医院和卫生保健机构中耐多药细菌的增加是普遍存在的,目前被认为是一项重大的医疗挑战。细菌耐药机制,即群体感应(QS)、生物膜形成和外排泵,已被确定为耐多药细菌的关键生物过程。继以往对吩噻嗪类药物抗细菌耐药机制的研究报道之后,本研究将重点研究杂蒽类衍生物的合成,旨在发现具有更高活性的吩噻嗪类生物异构体。由黄原醇与磺胺类和苯胺缀合得到4个化合物,并对其进行了表征。通过对革兰氏阳性和革兰氏阴性菌株的最低抑菌浓度(MIC)、外排泵抑制、对生物膜形成的影响和群体感应(QS)抑制来评估其抑菌活性。结果表明,化合物的MIC均在64µg/mL以上。得到的4个9-黄原基衍生物,特别是黄原磺酰胺衍生物3b和3c,对QS的抑制效果较好,分别减少了48和41 mm的色素生成,减少了78%和79%的生物膜形成。
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