益生菌
医学
植物乳杆菌
微生物学
乳酸菌
糖尿病
生物
细菌
免疫学
抗生素治疗
乳杆菌科
作者
Jinjie Hou,Rong Fu,Mengliu Zhao,Anlai Zou,Yidan Wang,Zexiang Wang,Yunlei Xianyu
出处
期刊:Research
[American Association for the Advancement of Science]
日期:2026-01-01
卷期号:9: 1258-1258
标识
DOI:10.34133/research.1258
摘要
High-glucose microenvironment in diabetic wound exacerbates the risk of bacterial infections and perpetuates chronic inflammation, thereby complicating wound healing. To meet these challenges, we develop antibacterial agents by integrating probiotics with nanozymes targeting high glucose levels and multidrug-resistant bacterial infections in diabetic wound healing. We engineer probiotic Lactobacillus plantarum (LP) with Fe-based nanozymes containing glucose oxidase (GOx) as antibacterial agents (LP@FeG) for diabetic wound therapy. The bioactivity of LP ferments glucose in the wounds, thereby reducing local pH through lactic acid production. Besides, GOx catalyzes the conversion of glucose into gluconic acid and hydrogen peroxide, further lowering local pH. In addition, GOx stimulates the peroxidase-like activity of Fe-based nanozymes, thereby generating reactive oxygen species that attack the cellular membrane, facilitating the entry of Fe 2+ /Fe 3+ into bacteria and inducing bacterial death through ferroptosis and lipid peroxidation. In vivo studies demonstrate that LP@FeG exhibits prolonged sterilization of methicillin-resistant Staphylococcus aureus with an almost 100% antibacterial rate, marked anti-inflammatory, and proangiogenic effects in diabetic wounds. This strategy resolves both the high glucose level and bacterial infections in wound healing, being promising for the treatment of diabetic wounds.
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