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Engineered Phage with Aggregation-Induced Emission Photosensitizer in Cocktail Therapy against Sepsis.

Ming-Yu WuLuojia ChenQingrong ChenRui HuXiaoyu XuYifei WangJie LiShun FengChangjiang DongXiao-Lian ZhangZhiqiang LiLianrong WangShi ChenMeijia Gu
Published in: Advanced materials (Deerfield Beach, Fla.) (2022)
Sepsis, a widely recognized disease, is characterized by multiple pathogen infections. Therefore, it is imperative to develop methods that can efficiently identify and neutralize pathogen species. Phage cocktail therapy utilizes the host specificity of phages to adapt to infect resistant bacteria. However, its low sterilization stability efficiency and lack of imaging units seriously restrict its application. Here, we propose a novel strategy combining the aggregation-induced emission photosensitizer (AIE-PS) TBTCP-PMB with phages through a nucleophilic substitution reaction between benzyl bromide and sulfhydryl groups to remove pathogenic bacteria for sepsis treatment. This strategy retains the phage's host specificity while possessing AIE-PS characteristics with a fluorescence imaging function and reactive-oxygen-species (ROS) for detecting and sterilizing bacteria. This synergetic strategy combining phage cocktail therapy and photodynamic therapy (PDT) showed a strong "1+1>2" bactericidal efficacy and superior performance in sepsis mouse models with good biocompatibility. Furthermore, the strategy can quickly diagnose blood infections of clinical blood samples. This simple and accurate strategy provides a promising therapeutic platform for rapid pathogen detection and point-of-care diagnosis. Moreover, it presents a new method for expanding the library of antibacterial drugs to develop new strain identification and improve infectious disease treatment, thereby demonstrating strong translational potential. This article is protected by copyright. All rights reserved.
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