Molecular Rotor‐Based NIR‐II TICTgens for Mitochondria‐Targeted Pyroptosis Induction and Multi‐Model Monitoring of Cancer Immunotherapy

M Min Li J Jing Gao Y Yaxiong Xie (State Key Laboratory of Chemical Biology & Center of Pharmaceutics, Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai 201203 China) Z Zifan Zhu (School of Chemistry and Molecular Engineering) L Lujia Huang (State Key Laboratory of Chemical Biology & Center of Pharmaceutics) Y Yi Lai (State Key Laboratory of Chemical Biology and Center of Pharmaceutics, Shanghai Institute of Materia Medica) M Muhammad Yar M Marek Bajda (Department of Physicochemical Drug Analysis, Faculty of Pharmacy Jagiellonian University Medical College Krakow 30‐688 Poland) M Ming Li H Haijun Yu (State Key Laboratory of Chemical Biology and Center of Pharmaceutics, Shanghai Institute of Materia Medica) F Feng Wang Z Zhiai Xu (School of Chemistry and Molecular Engineering)

Abstract

Abstract Pyroptosis has emerged as a promising mechanism for eliciting robust antitumor immunity; however, the current pyroptosis inducers lack tumor‐selectivity and feedback of therapeutic effect. In this study, we developed a series of twisted intramolecular charge transfer luminogens (TICTgens) for precisely regulating and in situ monitoring of tumor cell pyroptosis in vitro and in vivo. The outperformed TICTgen HCM displayed second near‐infrared (NIR‐II) fluorescence emission and exceptional viscosity sensitivity. Upon 671 nm laser irradiation, HCM induced the generation of type‐I/II reactive oxygen species (ROS) and hyperthermia effect, which cumulatively triggered mitochondrial damage and pyroptosis of tumor cells. HCM was systemically delivered via intracellular acidity‐sensitive nanoparticles (namely PDPA@HCM NPs) to effectively trigger pyroptosis‐driven antitumor immunity. Notably, HCM performed NIR‐II fluorescence and photoacoustic (PA) imaging of pyroptosis‐induced mitochondrial dysfunction by measuring viscosity change, thus enabling in situ monitoring of pyroptosis‐mediated antitumor immunotherapy. In combination with immune checkpoint blockade therapy, the PDPA@HCM NPs dramatically regressed colorectal tumor growth in a mouse model. Overall, this study demonstrated that the TICTgens could serve as a versatile platform for pyroptosis induction and monitoring of pyroptosis‐based cancer immunotherapy.

Article Details

Volume / Issue Vol. 64, Issue 38
Published September 15, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (12)

M

Min Li

J

Jing Gao

Y

Yaxiong Xie

State Key Laboratory of Chemical Biology & Center of Pharmaceutics, Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai 201203 China

Z

Zifan Zhu

School of Chemistry and Molecular Engineering

L

Lujia Huang

State Key Laboratory of Chemical Biology & Center of Pharmaceutics

Y

Yi Lai

State Key Laboratory of Chemical Biology and Center of Pharmaceutics, Shanghai Institute of Materia Medica

M

Muhammad Yar

M

Marek Bajda

Department of Physicochemical Drug Analysis, Faculty of Pharmacy Jagiellonian University Medical College Krakow 30‐688 Poland

M

Ming Li

H

Haijun Yu

State Key Laboratory of Chemical Biology and Center of Pharmaceutics, Shanghai Institute of Materia Medica

F

Feng Wang

Z

Zhiai Xu

School of Chemistry and Molecular Engineering