Perilipin‐2‐Anchored Lipid Droplet‐Targeting Phototheranostics

L Lipeng Zhang (College of Chemical Engineering) J Jiyoung Yoo (Department of Chemistry) J Juan Bai S Sunghyun Kim Y Yesim Bakan (Department of Chemistry Korea University Seoul Republic of Korea) Y Yongbin Zhang F Fangjun Huo (Key Laboratory of Chemical Biology and Molecular Engineering of the Ministry of Education Biomedical and Health Laboratory in Shanxi Province Research Institute of Applied Chemistry Shanxi University Taiyuan China) J Jingying Zhou (Future Battery Research Center, Global Institute of Future Technology) C Caixia Yin (Key Laboratory of Chemical Biology and Molecular Engineering of the Ministry of Education Biomedical and Health Laboratory in Shanxi Province Institute of Molecular Science Shanxi University Taiyuan China) J Jong Seung Kim (Department of Chemistry)

Abstract

ABSTRACT Conventional photothermal agents are readily taken up by normal cells, which may cause off‐target damage. Lipid droplet (LD) targeting can enable photothermal agents to accumulate in tumor cells enriched in LDs, a central hub for lipid storage. We herein report an LD‐targeted theranostic agent , C‐BDP‐OMe, through a dual‐anchoring strategy that combines the principle of “like dissolves like” with specific docking to the PLIN2 protein. Structurally, C‐BDP‐OMe features an extended conjugated system and an asymmetric coumarin‐fused BODIPY scaffold, enabling NIR‐region optical properties, a large Stokes shift, and high photostability. The probe exhibits polarity‐sensitive behavior, with turn‐on fluorescence and a high signal‐to‐noise ratio under no‐wash conditions. Furthermore, C‐BDP‐OMe demonstrates robust photothermal performance, with a photothermal conversion efficiency of 62.6%, enabling localized photothermal ablation and resulting in effective tumor suppression while avoiding systemic side effects. The therapeutic mechanism was systematically investigated and shown to involve the concurrent activation of two distinct cell death pathways—apoptosis and ferroptosis. This work highlights the therapeutic value of subcellular organelle‐level precision interventions and underscores the importance of exploiting subtle microenvironmental features in the design of next‐generation anticancer theranostic agents.

Article Details

Volume / Issue Vol. 65, Issue 30
Published July 20, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (10)

L

Lipeng Zhang

College of Chemical Engineering

J

Jiyoung Yoo

Department of Chemistry

J

Juan Bai

S

Sunghyun Kim

Y

Yesim Bakan

Department of Chemistry Korea University Seoul Republic of Korea

Y

Yongbin Zhang

F

Fangjun Huo

Key Laboratory of Chemical Biology and Molecular Engineering of the Ministry of Education Biomedical and Health Laboratory in Shanxi Province Research Institute of Applied Chemistry Shanxi University Taiyuan China

J

Jingying Zhou

Future Battery Research Center, Global Institute of Future Technology

C

Caixia Yin

Key Laboratory of Chemical Biology and Molecular Engineering of the Ministry of Education Biomedical and Health Laboratory in Shanxi Province Institute of Molecular Science Shanxi University Taiyuan China

J

Jong Seung Kim

Department of Chemistry