A Neutral Single‐Molecule Carrier for Delivery of Phosphonate Drugs

Q Qingling Nie (Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering Ministry of Industry and Information Technology School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 102488 China) J Juan Tang Y Yongsheng Li (Department of Chemistry, State Key Lab of Molecular Engineering of Polymers, and Shanghai Key Lab of Molecular Catalysis and Innovative Materials) J Ji Wang B Boyang Li (Department of Mechanical Engineering and Materials Science) H Hongwei Ma (Analysis & Testing Center) X Xiao‐Juan Yang (Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering Ministry of Industry and Information Technology School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 102488 China) W Wei Zhao B Biao Wu (Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering)

Abstract

Abstract Phosphate/phosphonate‐based drugs (PDs), as multinegative, hydrophilic molecules, face the greatest difficulty in diffusion across biological membranes, leading to poor bioavailability. Conventional drug delivery strategies to overcome this issue, including utilizing small‐molecule prodrugs or nanoparticle carriers, often suffer from case‐specific modifications or uncertainties in drug loading. Inspired by the anion coordination chemistry of natural phosphate transporters and artificial anion receptors, here, we present the first use of a neutral anion receptor, i.e., bis(tripodal hexaurea) cage 1 , as a “single‐molecule carrier” for the delivery of PDs into living cells. Cage 1 features advantages of molecular‐level encapsulation, enhanced intracellular accumulation, subcellular targeting, responsive drug release, and broad adaptability. It enhances PD accumulation in tumor cells both in vitro and in vivo, enhancing the cellular uptake of mono‐, di‐, and tri‐phosphate/phosphonate substrates by up to 45‐fold via a macropinocytosis‐mediated endocytosis pathway. This work demonstrates the potential of neutral anion receptors to serve as single‐molecule carriers and offers a promising solution for improving PDs bioavailability, advancing the development of antitumor phosphate/phosphonate‐based drugs.

Article Details

Volume / Issue Vol. 64, Issue 30
Published July 21, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

Q

Qingling Nie

Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering Ministry of Industry and Information Technology School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 102488 China

J

Juan Tang

Y

Yongsheng Li

Department of Chemistry, State Key Lab of Molecular Engineering of Polymers, and Shanghai Key Lab of Molecular Catalysis and Innovative Materials

J

Ji Wang

B

Boyang Li

Department of Mechanical Engineering and Materials Science

H

Hongwei Ma

Analysis & Testing Center

X

Xiao‐Juan Yang

Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering Ministry of Industry and Information Technology School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 102488 China

W

Wei Zhao

B

Biao Wu

Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering