微生物学
病菌
生物
细菌细胞结构
体内
细菌
微生物群
微生物毒素
毒素
致病菌
人类病原体
肠炎
抗菌剂
活性氧
体外
金黄色葡萄球菌
先天免疫系统
食源性病原体
作者
Weiwei Chen,Jiayi Zhu,Kerong Chen,Anwei Zhou,Junrong Li,xinghai ning,Delian Kong
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-11-10
标识
DOI:10.1021/acsnano.5c15064
摘要
Bacterial enteritis necessitates innovative therapeutic strategies to overcome the significant limitations posed by conventional antibiotics. Here, we introduce a pioneering antibacterial approach, employing a multifaceted "catch-and-kill" mechanism that synergistically integrates targeted pathogen capture, sonodynamic eradication, and toxin neutralization. We present SonoMMT, a microfluidically engineered sonosensitizer-montmorillonite complex. SonoMMT selectively adsorbs pathogenic bacteria and bacterial toxins, shields encapsulated sonosensitizers from gastric degradation, and enables sonodynamic therapy. Upon ultrasound activation, SonoMMT generates localized reactive oxygen species (ROS), efficiently eliminating captured pathogens and neutralizing residual toxins while preserving host cell integrity. In vitro assessments demonstrate robust antibacterial efficacy against bacteria. In vivo studies using a Salmonella typhimurium (S. typhimurium)-induced enteritis mouse model confirm that orally delivered SonoMMT significantly reduces bacterial loads, toxin levels, intestinal inflammation, and tissue damage. Moreover, gut microbiome analysis reveals beneficial shifts in microbial composition post-treatment, underscoring SonoMMT's dual action in pathogen clearance and microbiome restoration. Thus, SonoMMT represents a transformative advancement in bacterial enteritis management.
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