蜂毒肽
细菌
溶解循环
生物
微生物学
癌症研究
免疫学
生物化学
病毒
膜
遗传学
作者
Wenxuan Xu,Huanhuan Chen,Yamin Duan,Daqing Ge,Debao Ren,Shuai Zhao,Yang Liu,Lixin Ma,Cheng Zhang
标识
DOI:10.1021/acsami.3c11457
摘要
Bacteria-based tumor therapy has attracted much attention due to its unique mechanism and abundant application. With the rapid development of synthetic biology, utilizing gene technology to make bacteria express therapeutic agents has greatly innovated bacterial therapy paradigms. Herein, we constructed an Escherichia coli expressing promelittin protein system based on the Trojan horse strategy, which limited the toxicity of melittin through the fusion protein during melittin expression. After targeted colonization of bacteria in tumor tissues, promelittin was activated by matrix metalloproteinase, followed by causing tumor cell death through a membrane-lytic mechanism. Additionally, the released cytolytic melittin in turn killed the maternal bacteria, eliminating safety hazards and triggering host immunity. Detailed experiments revealed that the bacteria expressing the promelittin system could significantly inhibit the proliferation and metastasis of primitive tumors in a CT26-bearing mice model. This study sheds insights into the development of bacteria-based synergistic tumor therapy.
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