Self-assembling dendrimer nanosystems for specific fluorine magnetic resonance imaging and effective theranostic treatment of tumors

Author:

Lyu Zhenbin12,Ralahy Brigino1ORCID,Perles-Barbacaru Teodora-Adriana3,Ding Ling13ORCID,Jiang Yifan1ORCID,Lian Baoping4,Roussel Tom1,Liu Xi15,Galanakou Christina1,Laurini Erik6ORCID,Tintaru Aura2ORCID,Giorgio Suzanne1,Pricl Sabrina67ORCID,Liu Xiaoxuan4,Bernard Monique3,Iovanna Juan5ORCID,Viola Angèle3ORCID,Peng Ling1ORCID

Affiliation:

1. Aix Marseille University, CNRS, Centre Interdisciplinaire de Nanoscience de Marseille (UMR 7325), Equipe Labellisée Ligue Contre le Cancer, Marseille 13288, France

2. Aix Marseille University, CNRS, Institut de Chimie Radicalaire, UMR 7273, Marseille 13013, France

3. Aix Marseille University, CNRS, Centre de Résonance Magnétique Biologique et Médicale, UMR 7339, Marseille 13385, France

4. State Key Laboratory of Natural Medicines and Jiangsu Key Laboratory of Drug Discovery for Metabolic Diseases, Center of Drug Discovery, Center of Advanced Pharmaceuticals and Biomaterials, China Pharmaceutical University, Nanjing 211198, People’s Republic of China

5. Centre de Recherche en Cancérologie de Marseille, INSERM U1068, CNRS, UMR 7258, Institut Paoli-Calmettes, Aix Marseille Université, Marseille 13273, France

6. Molecular Biology and Nanotechnology Laboratory, Department of Engineering and Architecture, University of Trieste, Trieste 34127, Italy

7. Department of General Biophysics, Faculty of Biology and Environmental Protection, University of Lodz, Lodz 90-236, Poland

Abstract

Fluorine magnetic resonance imaging ( 19 F-MRI) is particularly promising for biomedical applications owing to the absence of fluorine in most biological systems. However, its use has been limited by the lack of safe and water-soluble imaging agents with high fluorine contents and suitable relaxation properties. We report innovative 19 F-MRI agents based on supramolecular dendrimers self-assembled by an amphiphilic dendrimer composed of a hydrophobic alkyl chain and a hydrophilic dendron. Specifically, this amphiphilic dendrimer bears multiple negatively charged terminals with high fluorine content, which effectively prevented intra- and intermolecular aggregation of fluorinated entities via electrostatic repulsion. This permitted high fluorine nuclei mobility alongside good water solubility with favorable relaxation properties for use in 19 F-MRI. Importantly, the self-assembling 19 F-MRI agent was able to encapsulate the near-infrared fluorescence (NIRF) agent DiR and the anticancer drug paclitaxel for multimodal 19 F-MRI and NIRF imaging of and theranostics for pancreatic cancer, a deadly disease for which there remains no adequate early detection method or efficacious treatment. The 19 F-MRI and multimodal 19 F-MRI and NIRF imaging studies on human pancreatic cancer xenografts in mice confirmed the capability of both imaging modalities to specifically image the tumors and demonstrated the efficacy of the theranostic agent in cancer treatment, largely outperforming the clinical anticancer drug paclitaxel. Consequently, these dendrimer nanosystems constitute promising 19 F-MRI agents for effective cancer management. This study offers a broad avenue to the construction of 19 F-MRI agents and theranostics, exploiting self-assembling supramolecular dendrimer chemistry.

Funder

Ligue Contre le Cancer

Agence Nationale de la Recherche

EU H2020

EU Horizon Europe

Publisher

Proceedings of the National Academy of Sciences

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