Almeida-Bezerra José Weverton, da Costa Silva José Thyálisson, Morais-Braga Maria Flaviana Bezerra, da Cruz Rafael Pereira, Alencar Gabriel Gonçalves, Alves Daniel Sampaio, de Sousa Rodrigues Ewerton Yago, de Sousa Simone Galdino, de Menezes Irwin Rose Alencar, Rocha Janaína Esmeraldo, Filho José Maria Barbosa, Leite Dos Santos Carlos Alonso, Costa Adrielle Rodrigues, Domiciano Carolina Bandeira, de Lima Lucia Raquel, Coutinho Henrique Douglas Melo
Department of Biological Chemistry, Regional University of Cariri - URCA, Crato, Ceará 63105-000, Brazil.
Department of Biological Sciences, Cariri Regional University - URCA, Crato, CE 63105-000, Brazil.
Toxicol Rep. 2025 Jan 25;14:101929. doi: 10.1016/j.toxrep.2025.101929. eCollection 2025 Jun.
The Gram-positive bacterium is responsible for causing both community-acquired and healthcare-associated infections, and it exhibits high antibiotic resistance due to the presence of efflux pumps. These pumps, such as QacA and QacB, are proteins that expel toxic substances, including antibiotics, making infection treatment more difficult. Among the alternatives to combat this resistance are terpenes, like β-caryophyllene, which have the potential to inhibit these efflux pumps due to their nonpolar nature. Considering this, the objective of this work is to investigate the ability of the mentioned terpene to act as an inhibitor of the QacA/B pump in , as well as to analyze its pharmacokinetic and toxicological properties in silico. Initially, a molecular docking simulation was performed using the CryoEM structure of the QacA protein with the software AutoDock VINA to evaluate the interactions between β-caryophyllene and the target protein. Subsequently, assays were conducted to determine the Minimum Inhibitory Concentration (MIC) of β-caryophyllene and its ability to inhibit the efflux pump in combination with ampicillin in resistant strains of . Additionally, ADMET predictions were performed using the SwissADME platform. The results showed that the terpene enhanced the action of ampicillin, reducing the minimum inhibitory concentration (MIC) by 50 %. However, it was not able to reduce the MIC of ethidium bromide. The analysis indicated that β-caryophyllene has good bioavailability and drug-likeness characteristics, but with limitations in its gastrointestinal absorption and brain permeability. The study concludes that β-caryophyllene is a promising candidate as an adjuvant in the treatment of antibiotic-resistant infections, especially due to its ability to partially inhibit efflux pumps.
革兰氏阳性菌可引发社区获得性感染和医疗保健相关感染,并且由于存在外排泵而表现出高度抗生素耐药性。这些泵,如QacA和QacB,是能够排出包括抗生素在内的有毒物质的蛋白质,这使得感染治疗更加困难。对抗这种耐药性的替代方法之一是萜类化合物,如β-石竹烯,由于其非极性性质,有可能抑制这些外排泵。考虑到这一点,本研究的目的是研究上述萜类化合物作为QacA/B泵抑制剂在……中的作用能力,并在计算机上分析其药代动力学和毒理学特性。首先,使用QacA蛋白的冷冻电镜结构和AutoDock VINA软件进行分子对接模拟,以评估β-石竹烯与靶蛋白之间的相互作用。随后,进行……试验,以确定β-石竹烯在……耐药菌株中的最低抑菌浓度(MIC)及其与氨苄西林联合抑制外排泵的能力。此外,使用SwissADME平台进行……ADMET预测。结果表明,萜类化合物增强了氨苄西林的作用,使最低抑菌浓度(MIC)降低了50%。然而,它无法降低溴化乙锭的MIC。……分析表明,β-石竹烯具有良好的生物利用度和类药特性,但在胃肠道吸收和脑通透性方面存在局限性。该研究得出结论,β-石竹烯作为治疗抗生素耐药性感染的佐剂是一个有前景的候选药物,特别是由于其能够部分抑制外排泵。