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新型氧杂蒽酮类抗菌剂:半合成、生物学评价及作用机制

Novel xanthone antibacterials: Semi-synthesis, biological evaluation, and the action mechanisms.

作者信息

Lu Yan, Guan Ting, Wang Shaobing, Zhou Cui, Wang Meizhu, Wang Xiaoyang, Zhang Keyu, Han Xiangan, Lin Jinchao, Tang Qun, Wang Chunmei, Zhou Wen

机构信息

Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, 200241 Shanghai, China; School of Pharmaceutical Sciences, South-Central University for Nationalities, 430074 Wuhan, China.

School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, E. 232, University town, Waihuan Rd, Panyu, Guangzhou 510006, Guangdong, China.

出版信息

Bioorg Med Chem. 2023 Apr 1;83:117232. doi: 10.1016/j.bmc.2023.117232. Epub 2023 Mar 8.

Abstract

α-Mangostin (α-MG) has demonstrated to display potent activities against Gram-positive bacterial. However, the contribution of phenolic hydroxyl groups of α-MG to the antibacterial activity remains obscure, severely hampering selection of structure modification to develop more potential α-MG-based anti-bacterial derivatives. Herein, twenty-one α-MG derivatives are designed, synthesized and evaluated for the antibacterial activities. The structure activity relationships (SARs) reveal that the contribution of the phenolic groups ranks as C3 > C6 > C1, and the phenolic hydroxyl group at C3 is essential to the antibacterial activity. Of note, compared to the parent compound α-MG, 10a with one acetyl at C1 exhibits the higher safety profiles due to its higher selectivity and no hemolysis, and the more potent antibacterial efficacy in an animal skin abscess model. Our evidences further present that, in comparison with α-MG, 10a has a stronger ability in depolarizing membrane potentials and leads to more leakage of bacterial proteins, consistent with the results observed by transmission electron microscopy (TEM). Transcriptomics analysis demonstrates those observations possibly relate to disturbed synthesis of proteins participating in the biological process of membrane permeability and integrity. Collectively, our findings provide a valuable insight for developing α-MG-based antibacterial agents with little hemolysis and new action mechanism via structural modifications at C1.

摘要

α-山竹黄酮(α-MG)已被证明对革兰氏阳性菌具有强大的活性。然而,α-MG的酚羟基对抗菌活性的贡献仍不清楚,这严重阻碍了通过结构修饰来开发更具潜力的基于α-MG的抗菌衍生物的选择。在此,设计、合成并评估了21种α-MG衍生物的抗菌活性。构效关系(SARs)表明,酚基团的贡献顺序为C3>C6>C1,且C3位的酚羟基对抗菌活性至关重要。值得注意的是,与母体化合物α-MG相比,C1位有一个乙酰基的10a具有更高的安全性,因为它具有更高的选择性且无溶血现象,并且在动物皮肤脓肿模型中具有更强的抗菌效果。我们的证据进一步表明,与α-MG相比,10a具有更强的使膜电位去极化的能力,并导致更多细菌蛋白质泄漏,这与透射电子显微镜(TEM)观察到的结果一致。转录组学分析表明,这些观察结果可能与参与膜通透性和完整性生物学过程的蛋白质合成紊乱有关。总的来说,我们的研究结果为通过在C1位进行结构修饰来开发具有低溶血和新作用机制的基于α-MG的抗菌剂提供了有价值的见解。

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