Optoregulated mRNA Delivery Controls Pleiotropic Immune Signaling for Tumor‐Targeted Therapy
Abstract
AbstractSpatiotemporal control of protein expression remains a critical challenge in messenger RNA (mRNA) therapeutics, particularly for tumor‐targeted therapy. Here, we introduce a Light‐Induced Transfection System (LITS) leveraging photosensitizing polymers to deliver mRNA systemically and activate its translation via light‐triggered endosomal escape. This system enables localized protein expression in any irradiated tissue, allowing for spatial control of therapeutic effects. Using interleukin‐2 (IL‐2) as a model, we demonstrate that LITS can trigger proinflammatory cytokine levels in irradiated tumors, while inducing tolerogenic IL‐2 levels in nonirradiated healthy tissues. This modulation of IL‐2′s pleiotropic effects provides both potent antitumor activity and reduced toxicity. Furthermore, by optimizing light exposure, LITS synergizes IL‐2 efficacy by driving immunogenic cell death to eradicate lung metastasis in a breast cancer model. Our findings establish LITS as a programmable mRNA delivery platform for on‐demand targeted and safe therapies.
Article Details
Authors (8)
Pengwen Chen
Department of Mathematics, National Tsing Hua University 6 , Hsinchu 30013,
Guanghao Hu
Department of Bioengineering Graduate School of Engineering The University of Tokyo 7‐3‐1 Hongo Bunkyo‐ku Tokyo 113‐0033 Japan
Yuki Nakashima
Zhining Xu
Institute of Materials and Environmental Chemistry HUN‐REN Research Centre for Natural Sciences 1117, Magyar Tudósok Körútja 2 Budapest Hungary
Takayoshi Watanabe
Earth-Life Science Institute (ELSI)
Soichiro Kondo
Ervin Kovács
Department of Bioengineering Graduate School of Engineering The University of Tokyo 7‐3‐1 Hongo Bunkyo‐ku Tokyo 113‐0033 Japan
Horacio Cabral