A live biohybrid bacterial therapy based on engineered Serratia marcescens

L Lihao Ji T Tianze Zhu T Tianqi Jiang L Li Wang (The Affiliated Cancer Hospital of Zhengzhou University and Henan Cancer Hospital Zhengzhou China) Z Zhonghui Qiu S Shiqi Gao (School of Life Sciences) Y Yuqi Wang J Jing Wang (Hunan Cancer Hospital Changsha China) J Jingyi Zhang (Chemistry and Biomedicine Innovation Center (ChemBIC), State Key Laboratory of Coordination Chemistry, School of Chemistry) H Haomiao Huang Y Yunlong Mao (State Key Laboratory of Novel Software Technology) C Chen Lin (School of Pharmaceutical Sciences) J Jing Zhao X Xiuxiu Wang (School of Life Sciences) W Wei Wei

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

Volume / Issue Vol. 17, Issue 1
Published April 07, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

L

Lihao Ji

T

Tianze Zhu

T

Tianqi Jiang

L

Li Wang

The Affiliated Cancer Hospital of Zhengzhou University and Henan Cancer Hospital Zhengzhou China

Z

Zhonghui Qiu

S

Shiqi Gao

School of Life Sciences

Y

Yuqi Wang

J

Jing Wang

Hunan Cancer Hospital Changsha China

J

Jingyi Zhang

Chemistry and Biomedicine Innovation Center (ChemBIC), State Key Laboratory of Coordination Chemistry, School of Chemistry

H

Haomiao Huang

Y

Yunlong Mao

State Key Laboratory of Novel Software Technology

C

Chen Lin

School of Pharmaceutical Sciences

J

Jing Zhao

X

Xiuxiu Wang

School of Life Sciences

W

Wei Wei