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梅尔德伦酸衍生物是MepA外排泵抑制剂:体外和计算机模拟研究

Meldrum's acid derivates are MepA efflux pump inhibitors: In vitro and in silico essays.

作者信息

Araújo Isaac Moura, Pereira Raimundo Luiz Silva, de Araújo Ana Carolina Justino, Gonçalves Sheila Alves, Tintino Saulo Relison, Oliveira-Tintino Cícera Datiane de Morais, de Menezes Irwin Rose Alencar, Salamoni Renata, Begnini Iêda Maria, Rebelo Ricardo Andrade, Silva Luiz Everson da, Gurgel Ana Pavla Almeida Diniz, Coutinho Henrique Douglas M

机构信息

Department of Chemistry-Biology, Regional University of Cariri-URCA, Crato, Ceará, Brazil.

Department of Biology, Regional University of Cariri-URCA, Crato, Ceará, Brazil.

出版信息

J Basic Microbiol. 2024 Feb;64(2):e2300558. doi: 10.1002/jobm.202300558. Epub 2023 Dec 18.

Abstract

Efflux pumps are proteins capable of expelling antibiotics from bacterial cells, have emerged as a major mechanism of bacterial resistance. In the ongoing pursuit to overcome and reduce bacterial resistance, novel substances are being explored as potential efflux pump inhibitors. Meldrum's acid, a synthetic molecule widely studied for its role in synthesizing bioactive compounds, holds promise in this regard. Therefore, the objective of this study is to evaluate the antibacterial activity of three derivatives of Meldrum's acid and assess their ability to inhibit efflux mechanisms, employing both in silico and in vitro approaches. The antibacterial activity of the derivatives was assessed using a broth microdilution testing method. Surprisingly, the derivatives did not exhibit direct antibacterial activity on their own. However, they displayed a significant effect in enhancing the efficacy of antibiotics, suggesting a potential role in potentiating their effects. Furthermore, fluorescence emission assays using ethidium bromide indicated that the derivatives could potentially block efflux pumps, as they exhibited fluorescence levels comparable to the positive control. To further investigate their inhibitory capacity, molecular docking studies were conducted in silico, revealing binding interactions similar to ciprofloxacin and carbonyl cyanide 3-chlorophenylhydrazone, known efflux pump inhibitors. These findings highlight the potential of Meldrum's acid derivatives as effective inhibitors of efflux pumps. By targeting these mechanisms, the derivatives offer a promising avenue to enhance the effectiveness of antibiotics and combat bacterial resistance. This study underscores the importance of exploring novel strategies in the fight against bacterial resistance and provides valuable insights into the potential of Meldrum's acid derivatives as efflux pump inhibitors. Further research and exploration in this field are warranted to fully exploit their therapeutic potential.

摘要

外排泵是能够将抗生素从细菌细胞中排出的蛋白质,已成为细菌耐药性的主要机制。在持续致力于克服和降低细菌耐药性的过程中,新型物质正在作为潜在的外排泵抑制剂进行探索。丙二酸亚异丙酯是一种因其在合成生物活性化合物中的作用而被广泛研究的合成分子,在这方面具有潜力。因此,本研究的目的是评估丙二酸亚异丙酯的三种衍生物的抗菌活性,并采用计算机模拟和体外方法评估它们抑制外排机制的能力。使用肉汤微量稀释测试方法评估了衍生物的抗菌活性。令人惊讶的是,这些衍生物本身并未表现出直接的抗菌活性。然而,它们在增强抗生素疗效方面显示出显著效果,表明在增强其作用方面具有潜在作用。此外,使用溴化乙锭的荧光发射测定表明,这些衍生物可能会阻断外排泵,因为它们表现出与阳性对照相当的荧光水平。为了进一步研究它们的抑制能力,进行了计算机模拟分子对接研究,揭示了与已知的外排泵抑制剂环丙沙星和羰基氰3-氯苯腙相似的结合相互作用。这些发现突出了丙二酸亚异丙酯衍生物作为外排泵有效抑制剂的潜力。通过针对这些机制,这些衍生物为增强抗生素有效性和对抗细菌耐药性提供了一条有前景的途径。本研究强调了探索对抗细菌耐药性新策略的重要性,并为丙二酸亚异丙酯衍生物作为外排泵抑制剂的潜力提供了有价值的见解。该领域需要进一步的研究和探索,以充分发挥它们的治疗潜力。

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