Sono‐Flexocatalytic Tumor Suppression Enabled by SrTiO <sub>3</sub> Nanoflexocatalysts

Y Yanjia Lu (School of Medicine Nanjing Medical University Nanjing 210009 P.R. China) J Jian Lu M Mengying Hua (Center of Interventional Radiology and Vascular Surgery Department of Radiology Zhongda Hospital Medical School Southeast University Nanjing 210009 P.R. China) R Ruohui Wu (Center of Interventional Radiology and Vascular Surgery Department of Radiology Zhongda Hospital Medical School Southeast University Nanjing 210009 P.R. China) T Tong Sun (College of Chemistry and Chemical Engineering) H Hui Huang (Center of Basic Molecular Science (CBMS), Department of Chemistry) Z Zhongqian Hu (Department of Ultrasound Nanjing First Hospital Nanjing Medical University Nanjing 210000 P.R. China) J Jinhe Guo (School of Medicine Nanjing Medical University Nanjing 210009 P.R. China) Y Yu Chen

Abstract

Abstract Despite piezocatalytic tumor therapy offers a promising non‐invasive modality for disease treatment, its application is fundamentally limited by the requirement for non‐centrosymmetric piezocatalysts. To solve this critical issue, we present a novel “sono‐flexocatalytic therapy” (SFT) strategy using centrosymmetric strontium titanate (SrTiO 3 ) nanocatalysts. Under ultrasound irradiation, SrTiO 3 generates significant flexoelectric polarization due to the induced strain gradients, effectively separating charges. This drives robust redox reactions on the nanocatalyst surfaces, producing abundant cytotoxic reactive oxygen species (ROS) such as hydroxyl radicals and superoxide anions within tumor cells. The resultant ROS surge induces severe oxidative stress, mitochondrial dysfunction, and ultimately apoptosis, effectively suppressing tumor growth as validated by both in vitro and in vivo studies. Furthermore, theoretical simulations elucidate the specific strain‐gradient dependent sono‐flexocatalytic mechanism. This work pioneers sono‐flexocatalytic tumor therapy by leveraging ultrasound‐triggered flexoelectricity in SrTiO 3 nanocatalysts, thereby not only introducing centrosymmetric biomaterials into sonocatalytic treatments but also establishing a new paradigm for pancatalytic medicine with broad material applicability.

Article Details

Volume / Issue Vol. 65, Issue 7
Published February 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

Y

Yanjia Lu

School of Medicine Nanjing Medical University Nanjing 210009 P.R. China

J

Jian Lu

M

Mengying Hua

Center of Interventional Radiology and Vascular Surgery Department of Radiology Zhongda Hospital Medical School Southeast University Nanjing 210009 P.R. China

R

Ruohui Wu

Center of Interventional Radiology and Vascular Surgery Department of Radiology Zhongda Hospital Medical School Southeast University Nanjing 210009 P.R. China

T

Tong Sun

College of Chemistry and Chemical Engineering

H

Hui Huang

Center of Basic Molecular Science (CBMS), Department of Chemistry

Z

Zhongqian Hu

Department of Ultrasound Nanjing First Hospital Nanjing Medical University Nanjing 210000 P.R. China

J

Jinhe Guo

School of Medicine Nanjing Medical University Nanjing 210009 P.R. China

Y

Yu Chen