模块化设计
炎症性肠病
促炎细胞因子
肠道菌群
结直肠癌
机器人
泊洛沙姆
癌症治疗
癌症研究
医学
疾病
癌症
可扩展性
结肠炎
生物安全
微生物群
药物输送
溃疡性结肠炎
生物信息学
乳腺癌
计算机科学
自重构模块化机器人
炎症性肠病
计算生物学
免疫学
炎症
联合疗法
作者
Jinghao Fan,Lin Huang,Mingkang Liu,Hongmei Liu,Decheng Wu
摘要
Bacterial-mediated drug delivery has emerged as a promising strategy for disease treatment, leveraging bacteria's innate ability to penetrate biological barriers and target diseased tissues. However, existing bacteria-nanoparticle hybrid systems often suffer from complex fabrication, biosafety concerns, and limited scalability. To address these challenges, we developed Pluronic nanoparticle-modified modular bacterial robots through a facile Schiff base reaction between aldehyde-functionalized PF127 nanomicelles and bacterial surfaces. This modular design enables efficient loading of both hydrophilic and hydrophobic drugs, with broad compatibility across Gram-negative and Gram-positive bacterial strains. In a breast cancer model, the robots delivered chemotherapeutic payloads to tumors, significantly inhibiting progression. In the case of inflammatory bowel disease (IBD), the platform mitigated colitis symptoms, reduced proinflammatory cytokines, and restored gut microbiota homeostasis. The versatility, low toxicity, and customizable drug-loading capacity of this system highlight its potential as a scalable platform for targeted therapy of oncology and inflammatory diseases.
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