Amphiphilic Single‐Chain Polymer Nanoparticles as Imaging and Far‐Red Photokilling Agents for Photodynamic Therapy in Zebrafish Embryo Xenografts

Author:

Arena Davide1,Nguyen Christophe2,Ali Lamiaa M. A.23,Verde‐Sesto Ester14,Iturrospe Amaia1,Arbe Arantxa1,İşci Umit5,Şahin Zeynel5,Dumoulin Fabienne6,Gary‐Bobo Magali2,Pomposo José A.147ORCID

Affiliation:

1. Centro de Física de Materiales (CSIC, UPV/EHU) and Materials Physics Center MPC Paseo Manuel Lardizabal 5 Donostia 20018 Spain

2. Institut des Biomolécules Max Mousseron Université de Montpellier CNRS ENSCM Montpellier 34293 France

3. Department of Biochemistry Medical Research Institute University of Alexandria Alexandria 21561 Egypt

4. IKERBASQUE – Basque Foundation for Science Plaza de Euskadi 5 Bilbao 48009 Spain

5. Marmara University Faculty of Technology Department of Metallurgical and Materials Engineering Istanbul Turkey

6. Acıbadem Mehmet Ali Aydınlar University Faculty of Engineering and Natural Sciences Department of Biomedical Engineering Istanbul Turkey

7. Departamento de Polímeros y Materiales Avanzados: Física Química y Tecnología University of the Basque Country (UPV/EHU) Donostia 20800 Spain

Abstract

AbstractThis work introduces rationally designed, improved amphiphilic single‐chain polymer nanoparticles (SCNPs) for imaging and photodynamic therapy (PDT) in zebrafish embryo xenografts. SCNPs are ultrasmall polymeric nanoparticles with sizes similar to proteins, making them ideal for biomedical applications. Amphiphilic SCNPs result from the self‐assembly in water of isolated synthetic polymeric chains through intrachain hydrophobic interactions, mimicking natural biomacromolecules and, specially, proteins (in size and when loaded with drugs, metal ions or fluorophores also in function). These ultrasmall, soft nanoparticles have various applications, including catalysis, sensing, and nanomedicine. Initial in vitro experiments with nonfunctionalized, amphiphilic SCNPs loaded with a photosensitizing Zn phthalocyanine with four nonperipheral isobutylthio substituents, ZnPc, showed promise for PDT. Herein, the preparation of improved, amphiphilic SCNPs containing ZnPc as highly efficient photosensitizer encapsulated within the nanoparticle and surrounded by anthracene units is disclosed. The amount of anthracene groups and ZnPc molecules within each single‐chain nanoparticle controls the imaging and PDT properties of these nanocarriers. Critically, this work opens the way to improved PDT applications based on amphiphilic SCNPs as a first step toward ideal, long‐term artificial photo‐oxidases (APO).

Funder

Eusko Jaurlaritza

Ministerio de Ciencia e Innovación

Publisher

Wiley

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