Development of xanthone derivatives as effective broad-spectrum antimicrobials: Disrupting cell wall and inhibiting DNA synthesis.

Li, Haizhou; Kang, Wen-Tyng; Zheng, Yujiahui; He, Yonglv; Zhong, Rongcui; Fang, Shanfang; Wen, Weijie; Liu, Shouping et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

Discovering potent antibiotics is of critical importance due to the substantial increases of microbial resistance. Xanthones are intriguing sources of antimicrobials, despite a scarcity of extensive investigations into their mechanisms of action. Here, we reported the development of a series of xanthone derivatives, among which compound <b>XT17</b> displayed strong broad-spectrum antibacterial activity, weak hemolytic activity, and low cytotoxicity against mammalian cell lines, low frequencies of drug resistance, and potent in vivo efficacy in <i>Staphylococcu aureus</i>- or <i>Pseudomonas aeruginosa</i>-induced murine corneal infection models. Compound <b>XT17</b> presented a multifaceted mode of actions, involving the disruption of cell wall by interacting with lipoteichoic acid or lipopolysaccharides and the suppression of DNA synthesis. A further docking study confirmed the capability of compound <b>XT17</b> to form a stable complex with the bacterial gyrase enzyme. This work could offer an innovative design strategy for developing broad-spectrum therapeutic agents against drug-resistant bacteria.

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