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AIE-Based Theranostic Probe for Sequential Imaging and Killing of Bacteria and Cancer Cells

机译:基于AIE的治疗细菌和杀伤细菌和癌细胞的治疗探针

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Abstract Cancer initiation and progression is closely related to bacterial infection, which usually requires the simultaneous use of anticancer drugs and antibiotics in the clinic. However, the multiple use of chemodrugs significantly increases potential adverse effects. To tackle this challenge, theranostic agents with image‐guided dual therapy functions are highly desirable to treat both cancer and bacterial infection. Here, it is found that the aggregation‐induced emission (AIE)‐Mito‐triphenylphosphonium (TPP) probe with AIE characteristics quickly kills Gram‐positive Staphylococcus aureus and Gram‐negative E. coli by increasing bacterial membrane permeability, and it subsequently kills cancer cells by disrupting mitochondrial functions. The sequential killing of bacteria and cancer cells can be monitored in situ using the turn‐on fluorescence of the AIE‐Mito‐TPP probe with a high signal‐to‐noise ratio. Therefore, the AIE‐Mito‐TPP probe is promising for imaging‐guided precise treatment of bacterial infection and related cancers.
机译:摘要癌症启动和进展与细菌感染密切相关,这通常需要在临床中同时使用抗癌药物和抗生素。然而,化学细胞的多次使用显着提高了潜在的不利影响。为了解决这一挑战,具有图像引导的双重治疗功能的治疗剂是非常理想的,以治疗癌症和细菌感染。在这里,发现通过增加细菌膜渗透性,聚集诱导的发射(AIE)-mito-三苯基鏻(TPP)探针通过增加细菌膜渗透性迅速杀死革兰氏阳性葡萄球菌和革兰氏阴性大肠杆菌,随后杀死癌症通过破坏线粒体功能来细胞。可以使用AIE-MITO-TPP探针的开启荧光原位监测细菌和癌细胞的顺序杀死,具有高信噪比。因此,AIE-MITO-TPP探针对细菌感染和相关癌症的显着治疗有前途。

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