Pterostilbene synergizes with colistin against multidrug-resistant bacteria via iron chelation and membrane disruption, and promotes gut health restoration in weaned piglets
Huiting Yang, Jiaxuan Guo, Yinzhong Wen, Xiaomin Ren, Zilong Sun, Xiaoyong Huang
Journal:VETERINARY JOURNAL
IF:2.7
DOI:10.1016/j.tvjl.2026.106709
PMID:42162898
Published:2026-05-19
research field:兽医学药理学天然产物肠道健康食品安全微生物学抗菌耐药性
Abstract
The emergence of polymyxin-resistant Gram-negative pathogens has severely compromised colistin (COL) efficacy in veterinary therapy, posing critical challenges to animal health and food safety. Here, we show that pterostilbene (PTE), a dietary phenolic compound abundant in blueberries and grapes, effectively restores and enhances the antibacterial activity of COL. PTE acts synergistically with COL against multidrug-resistant strains, eliminates metabolically dormant persister cells and suppresses biofilm formation. Mechanistically, PTE chelates ferrous iron to deplete intracellular iron pools, while unexpectedly inhibiting iron-driven lipid peroxidation and preserving membrane potential. This disruption of iron homeostasis stimulates ATP generation but, when combined with COL, triggers a futile metabolic cycle that leads to severe ATP leakage. Additionally, PTE compromises outer membrane integrity and increases inner membrane phospholipid susceptibility, augmenting COL-induced lethal damage. In a Galleria mellonella infection model, the PTE-COL combination significantly improves survival. Moreover, in weaned piglets, PTE supplementation promotes restoration of a balanced gut microbiota and reduces pathogen abundance. These results highlight PTE as a safe, food-compatible adjuvant that resensitizes resistant bacteria to COL via a multi-target mechanism, offering a sustainable strategy for controlling resistant infections at the food-animal interface.
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