A live biohybrid bacterial therapy based on engineered Serratia marcescens
Abstract
Abstract Bacterial therapeutics hold great promise for cancer treatment by targeting oxygen-poor tumor regions and complementing existing therapies. However, current approaches often struggle with safety concerns and complex engineering. Developing a safe, effective delivery platform relying entirely on natural bacterial biosynthesis remains a challenge. Here we show that attenuated Serratia marcescens serves as a powerful biohybrid platform for cancer therapy by leveraging its natural biosynthesis of prodigiosin, a photosensitive pigment. We engineer S. marcescens to yield high prodigiosin levels, which exhibit strong intrinsic anti-cancer activity and near-infrared photosensitivity. In female mouse models of melanoma and colorectal cancer, this platform triggers robust systemic immune responses, including enhanced T cell recruitment and long-term memory against tumor recurrence. Furthermore, the bacteria induces tumor cell death via mitophagy, while photothermal properties of prodigiosin enables rapid, light-controlled bacterial clearance post-treatment. These findings establish S. marcescens as a versatile, self-regulating biosynthetic platform for precise and safe cancer immunotherapy.
Article Details
Authors (15)
Lihao Ji
Tianze Zhu
Tianqi Jiang
Li Wang
The Affiliated Cancer Hospital of Zhengzhou University and Henan Cancer Hospital Zhengzhou China
Zhonghui Qiu
Shiqi Gao
School of Life Sciences
Yuqi Wang
Jing Wang
Hunan Cancer Hospital Changsha China
Jingyi Zhang
Chemistry and Biomedicine Innovation Center (ChemBIC), State Key Laboratory of Coordination Chemistry, School of Chemistry
Haomiao Huang
Yunlong Mao
State Key Laboratory of Novel Software Technology
Chen Lin
School of Pharmaceutical Sciences
Jing Zhao
Xiuxiu Wang
School of Life Sciences
Wei Wei