Novel Antimicrobial Nano Bacteriocin: Lactic Acid Bacteria‐Derived, Self‐Assembled, and Enhanced for Superior Antimicrobial Activity

L Lanhua Yi (College of Food Science Southwest University Chongqing P. R. China) S Shengyang Li (Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR) M Miaomiao Xie B Bozhou Chen (Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR) K Kaichao Chen (Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR) Z Zhouxia Wang (College of Food Science Southwest University Chongqing P. R. China) M Min Zeng (Key Laboratory of Special Functional and Smart Polymer Materials of Ministry of Industry and Information Technology, Xi’an Key Laboratory of Functional Organic Porous Materials, School of Chemistry and Chemical Engineering) Q Qian Zhao (Zhejiang University , , ,) J Jiyu Yang (Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR) Y Yang Tang W Wenxing Zhao P Ping Zeng X Xuecheng Li J Jiaqi Wang K Kaifang Zeng (College of Food Science Southwest University Chongqing P. R. China) Y Yuyue Zhong (Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR) S Sheng Chen (Beijing Frontier Research Center for Biological Structures, State Key Laboratory of Membrane Biology, Tsinghua-Peking Joint Center for Life Sciences, School of Life Sciences, Tsinghua University, Beijing, China.)

Abstract

ABSTRACT As antimicrobial resistance emerges as a critical global health threat, food‐grade bacteriocin, a kind of antimicrobial peptide (AMPs), offers promising new therapies but is hampered by poor stability and water solubility. To address this, we engineered a carrier‐free self‐assembly strategy: a novel bacteriocin from lactic acid bacteria in fermented food was modified to increase its hydrophobicity, enabling spontaneous formation of nano‐antimicrobial bacteriocins (NAMBs) in TSB, LB, and MH media. These NAMBs exhibit a broader antimicrobial spectrum and enhanced potency against both Gram‐positive and Gram‐negative pathogens, including Listeria monocytogenes , Acinetobacter baumannii , and Vibrio parahaemolyticus , as evidenced by markedly reduced minimum inhibitory concentrations in vitro and superior therapeutic efficacy in infected mice in vivo. Mechanistic investigations reveal targeted disruption of cell envelope metabolism: in L. monocytogenes , NAMBs fortify the peptidoglycan layer while depleting wall teichoic acids and lipoteichoic acids, impairing carbohydrate metabolism and membrane transport; in A. baumannii , they downregulate fatty acid synthesis, disorder phospholipid composition, and weaken lipopolysaccharide integrity, culminating in membrane destabilization and cell death. These dual actions—disordering metabolic processes and remodeling bacterial cell walls or membranes—highlight the versatility of NAMBs. Our carrier‐free self‐assembly approach thus overcomes AMP stability and solubility limitations and paves the way for next‐generation antimicrobial therapies.

Article Details

Volume / Issue Vol. 38, Issue 13
Published March 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (17)

L

Lanhua Yi

College of Food Science Southwest University Chongqing P. R. China

S

Shengyang Li

Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR

M

Miaomiao Xie

B

Bozhou Chen

Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR

K

Kaichao Chen

Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR

Z

Zhouxia Wang

College of Food Science Southwest University Chongqing P. R. China

M

Min Zeng

Key Laboratory of Special Functional and Smart Polymer Materials of Ministry of Industry and Information Technology, Xi’an Key Laboratory of Functional Organic Porous Materials, School of Chemistry and Chemical Engineering

Q

Qian Zhao

Zhejiang University , , ,

J

Jiyu Yang

Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR

Y

Yang Tang

W

Wenxing Zhao

P

Ping Zeng

X

Xuecheng Li

J

Jiaqi Wang

K

Kaifang Zeng

College of Food Science Southwest University Chongqing P. R. China

Y

Yuyue Zhong

Department of Food Science and Nutrition The Hong Kong Polytechnic University Hung Hom Hong Kong SAR

S

Sheng Chen

Beijing Frontier Research Center for Biological Structures, State Key Laboratory of Membrane Biology, Tsinghua-Peking Joint Center for Life Sciences, School of Life Sciences, Tsinghua University, Beijing, China.