Retinoic‐Acid‐Derived Ionizable Lipids Enable Spleen‐Selective Antigen Expression for mRNA Cancer Vaccination

K Kai Jiang (Department of Pharmacy, The First Affiliated Hospital of the University of Science and Technology of China, and State Key Laboratory of Precision and Intelligent Chemistry) B Bing Shao (Department of Chemistry) R Runjie Li (State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering) T Tianzhu Liang (Hefei National Research Center for Physical Sciences At the Microscale and State Key Laboratory of Precision and Intelligent Chemistry University of Science and Technology of China Hefei Anhui China) C Chengying You (Department of Pharmacy, The First Affiliated Hospital of the University of Science and Technology of China, and State Key Laboratory of Precision and Intelligent Chemistry) L Lili Wang (Department of Chemistry) J Jie Cen (State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering) J Jiajia Tan (State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, School of Chemistry and Materials Science) Y Yanhao Zhang (Department of Pharmacy, The First Affiliated Hospital of the University of Science and Technology of China, and State Key Laboratory of Precision and Intelligent Chemistry) M Minglong Chen (State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering) S Shiyong Liu (State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, School of Chemistry and Materials Science)

Abstract

ABSTRACT Effective mRNA cancer vaccination requires productive antigen expression in lymphoid antigen‐presenting cells rather than high total antigen output. Here, we report a retinoic‐acid‐inspired ionizable lipid platform for spleen‐selective functional mRNA expression. Systematic variation of the ionizable scaffold, linker architecture, and retinoid‐derived hydrophobic domain generated a modular 40‐member library of retinoic‐acid‐derived ionizable lipids (RAILs). Paired in vitro and in vivo screening identified AT4‐13CRA LNPs as the lead formulation, with the highest spleen‐to‐liver reporter‐expression ratio and approximately 15.1‐fold higher splenic expression than the tested Dlin‐MC3/18PA selective organ targeting (SORT) formulation. Enhanced reporter expression was not explained by total cellular uptake alone and was accompanied by reduced lysosomal mRNA retention and attenuated TNF‐α/NF‐κB‐associated activation. Serum‐corona proteomics revealed an immunoglobulin heavy‐chain‐ and J‐chain‐associated profile distinct from the apolipoprotein‐associated profile of 18PA‐containing SORT LNPs. In Ai9 reporter mice and an OVA mRNA vaccination model, AT4‐13CRA LNPs promoted functional expression in splenic macrophages and dendritic cells, enhanced antigen‐specific CD8 + T‐cell and antibody responses, and improved prophylactic protection against B16F10‐OVA tumor challenge. These findings establish retinoid‐derived hydrophobic‐domain engineering as a chemically defined route to spleen‐selective, inflammation‐restrained, antigen‐presenting‐cell‐centered mRNA cancer vaccination.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 12, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (11)

K

Kai Jiang

Department of Pharmacy, The First Affiliated Hospital of the University of Science and Technology of China, and State Key Laboratory of Precision and Intelligent Chemistry

B

Bing Shao

Department of Chemistry

R

Runjie Li

State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering

T

Tianzhu Liang

Hefei National Research Center for Physical Sciences At the Microscale and State Key Laboratory of Precision and Intelligent Chemistry University of Science and Technology of China Hefei Anhui China

C

Chengying You

Department of Pharmacy, The First Affiliated Hospital of the University of Science and Technology of China, and State Key Laboratory of Precision and Intelligent Chemistry

L

Lili Wang

Department of Chemistry

J

Jie Cen

State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering

J

Jiajia Tan

State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, School of Chemistry and Materials Science

Y

Yanhao Zhang

Department of Pharmacy, The First Affiliated Hospital of the University of Science and Technology of China, and State Key Laboratory of Precision and Intelligent Chemistry

M

Minglong Chen

State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering

S

Shiyong Liu

State Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, School of Chemistry and Materials Science