One‐Step Assembly of α‐Aryl‐Substituted DOTAs as Superior and Universal Platforms for Multifunctional Theranostics

P Pak‐Lun Lam (Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China) Y Yue Wu (Genomic Analysis Laboratory, Salk Institute for Biological Studies, La Jolla, CA, USA.) L Lijia Yao H Hei‐Yui Kai (Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China) H Ho‐Fai Chau (Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China) Q Qian Zhang W Wanqi Zhou (National Key Laboratory of Mechanics and Control for Aerospace Structures and Key Laboratory for Intelligent Nano Materials and Devices of the Ministry of Education, Institute for Frontier Science) J Jean‐Claude G. Bünzli (Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China) K Ka‐Leung Wong (Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China)

Abstract

Abstract α‐Substituted DOTAs are promising chelators for MRI contrast agents owing to the improved coordination stability and relaxivity of the corresponding Gd(III) complexes. However, their broader application is limited by significant synthetic challenges arising from their multi‐component nature. In this work, we report—for the first time—the use of multi‐component reactions (MCRs) to assemble all necessary building blocks of α‐aryl‐substituted DOTAs in a single step. This strategy yields derivatives with faster coordination kinetics. Furthermore, we extend their application to luminescent lanthanide probes, achieving improved photophysical properties. This MCR approach offers a versatile solution for establishing a library of functionalized diagnostic and therapeutic agents. We are convinced that this work will reshape the field, inspiring broader exploration of α‐aryl‐substituted DOTA derivatives and unlocking their full potential in next‐generation biomedical applications.

Article Details

Volume / Issue Vol. 64, Issue 50
Published December 08, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

P

Pak‐Lun Lam

Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China

Y

Yue Wu

Genomic Analysis Laboratory, Salk Institute for Biological Studies, La Jolla, CA, USA.

L

Lijia Yao

H

Hei‐Yui Kai

Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China

H

Ho‐Fai Chau

Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China

Q

Qian Zhang

W

Wanqi Zhou

National Key Laboratory of Mechanics and Control for Aerospace Structures and Key Laboratory for Intelligent Nano Materials and Devices of the Ministry of Education, Institute for Frontier Science

J

Jean‐Claude G. Bünzli

Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China

K

Ka‐Leung Wong

Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University Hung Hom Hong Kong SAR China