医学
伤口愈合
慢性伤口
糖尿病
抗菌剂
伤口闭合
药理学
疾病
基质(化学分析)
糖尿病溃疡
重症监护医学
慢性病
控制释放
化学
生物医学工程
作者
Caihong Chen,Haoyu Gong,Biao Yang,Runxin Teng,Jiamin Zhang,Chun Yang,Beibei Zhang,Jianhua Li,Hongru Qiang,Jiaxi Xu,Zhen Fan,Chang Li,Jianzhong Du
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-01-21
卷期号:26 (4): 1542-1551
标识
DOI:10.1021/acs.nanolett.5c06163
摘要
Chronic diabetic wounds remain one of the most intractable complications of diabetes, demanding therapeutic strategies that can simultaneously regulate local glucose levels, combat persistent infections, and promote angiogenesis. Here, we engineer a living-therapeutic microneedle system that integrates metabolically active probiotics with a pH-responsive carboxymethyl chitosan/ l -arginine matrix to autonomously orchestrate wound microenvironment remodeling. Leveraging the unique metabolic capacity of Lactobacillus reuteri, our system rapidly and sustainably reduces local hyperglycemia (84.8% reduction over 48 h) while generating broad-spectrum antimicrobial reuterin in situ, circumventing drawbacks of conventional antibiotics. In parallel, a microneedle matrix scavenges reactive oxygen species and drives robust angiogenesis. In infected diabetic mice, a single administration can accelerate wound closure by 7.3-fold, eliminate pathogens via synergistic bactericidal and nutrient-competition mechanisms, and restore normoglycemia without rebound. This synergistic “metabolic engine–microenvironment modulation” paradigm addresses key barriers in diabetic wound healing and offers a scalable platform for living microbe–material therapeutics in chronic disease management.
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