Photo-excited extracellular electron transfer of electroactive microorganism triggers RAFT polymerization

C Chao Li J Jing Liu W Wenchang Hu L Lin Xiao (School of Biomedical Engineering) F Feng Li Q Qijing Liu J Junqi Zhang H Huan Yu B Baocai Zhang D Dake Xu (State Key Laboratory of Digital Steel, School of Materials Science and Engineering) S Shaoan Cheng W Wen-Wei Li K Kenneth H. Nealson H Hao Song

Abstract

Abstract Living cell-triggered reversible addition-fragmentation chain-transfer (RAFT) polymerization is of great value for construction of living materials with diverse applications. However, microorganisms-activated polymerization without end-group heterogeneity is not yet established. Here, we develop an electroactive microorganism-triggered polymerization system using Shewanella oneidensis- secreted flavins (as electron shuttles) to directly reduce chain transfer agents (CTAs) to continuously generate radicals, thus initiating RAFT polymerization. This S. oneidensis -triggered polymerization integrates microbial extracellular electron transfer pathway and photoinduced electron transfer to reduce CTAs for continuous radical generation. We then genetically engineer S. oneidensis to enhance flavins biosynthesis and transport, accomplishing increased conversion ratio ( > 90%) of poly(N, N-dimethylacrylamide) with low polydispersity ( Ð  < 1.20). In addition, the S. oneidensis -triggered RAFT polymerization is effective for various monomers and CTAs, being able to synthesize diverse block copolymers. Synergistic integration of synthetic biology and RAFT polymerization provides a sustainable and controllable polymerization platform.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 21, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

C

Chao Li

J

Jing Liu

W

Wenchang Hu

L

Lin Xiao

School of Biomedical Engineering

F

Feng Li

Q

Qijing Liu

J

Junqi Zhang

H

Huan Yu

B

Baocai Zhang

D

Dake Xu

State Key Laboratory of Digital Steel, School of Materials Science and Engineering

S

Shaoan Cheng

W

Wen-Wei Li

K

Kenneth H. Nealson

H

Hao Song