Bioinspired ruthenium-manganese-oxygen complex for biocatalytic and radiosensitization therapies to eradicate primary and metastatic tumors

R Ruidan Li T Ting Wang (Department of Radiation Oncology The Affiliated Cancer Hospital of Zhengzhou University and Henan Cancer Hospital Zhengzhou China) S Shengdong Mu (College of Food and Brewing Engineering) Z Zhenyu Xing (College of Polymer Science and Engineering, State Key Laboratory of Advanced Polymer Materials) Z Zhiying Ding Q Qinlong Wen (Department of Biotherapy, Cancer Center) Z Zhigong Wei (Department of Biotherapy, Cancer Center) X Xiaolin Wang (School of Pharmacy and State Key Laboratory of Quality Research in Chinese Medicine) M Mohsen Adeli S Shuang Li C Chong Cheng (Department of Ultrasound, Frontiers Science Center for Disease-Related Molecular Network, West China Hospital) X Xingchen Peng (Department of Biotherapy, Cancer Center)

Abstract

Abstract Designing efficient, biocompatible radiation-sensitive materials to activate systemic immune responses can maximize tumoricidal effects against malignant tumors. Here, inspired by natural Mn-peroxidase, we propose the de novo design of the RuMn-oxygen complex (MnBTC-Ru) for biocatalytic and radiosensitization therapies to eradicate primary and metastatic tumors. Our results reveal that Mn-organic ligands can enhance the electron density of Ru clusters, thereby optimizing their binding to oxygen species and resulting in high reactive oxygen species and oxygen generation. Accordingly, MnBTC-Ru with radiation can enhance cell membrane and DNA damage, triggering apoptosis though oxidative damage, heightening radiosensitization, and activating CD8+ T cells. When combined with anti-PD-1 therapy, this synergistic approach generates robust systemic antitumor responses in female mice, promoting the abscopal effect and establishing enduring immune memory against tumors, thereby reducing recurrence and metastasis. This design presents superior biocatalytic and radiosensitizing properties, which may provide promising and practical bio-nanotechnology for future treatments on eradicating primary and metastatic tumors.

Article Details

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

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

R

Ruidan Li

T

Ting Wang

Department of Radiation Oncology The Affiliated Cancer Hospital of Zhengzhou University and Henan Cancer Hospital Zhengzhou China

S

Shengdong Mu

College of Food and Brewing Engineering

Z

Zhenyu Xing

College of Polymer Science and Engineering, State Key Laboratory of Advanced Polymer Materials

Z

Zhiying Ding

Q

Qinlong Wen

Department of Biotherapy, Cancer Center

Z

Zhigong Wei

Department of Biotherapy, Cancer Center

X

Xiaolin Wang

School of Pharmacy and State Key Laboratory of Quality Research in Chinese Medicine

M

Mohsen Adeli

S

Shuang Li

C

Chong Cheng

Department of Ultrasound, Frontiers Science Center for Disease-Related Molecular Network, West China Hospital

X

Xingchen Peng

Department of Biotherapy, Cancer Center