NIR FRET Luminescence in Rhenium Complex and Dye Co‐Loaded Polymer Nanoparticles

Author:

Haye Lucie1,Fayad Nour2,Knighton Richard C.34ORCID,Combes Antoine1,Jeannin Olivier5,Klymchenko Andrey1ORCID,Gallavardin Thibault2ORCID,Hildebrandt Niko267ORCID,Charbonnière Loïc J.3ORCID,Reisch Andreas1ORCID

Affiliation:

1. Laboratoire de Bioimagerie et Pathologies UMR 7021 CNRS Université de Strasbourg F‐67000 Strasbourg France

2. Laboratoire COBRA (Chimie Organique, Bioorganique, Réactivité et Analyse) Université de Rouen Normandie Normandie Université CNRS INSA 76821 Rouen France

3. Equipe de Synthèse Pour l'Analyse (SynPA) Institut Pluridisciplinaire Hubert Curien (IPHC) UMR 7178 CNRS Université de Strasbourg ECPM 25 rue Becquerel Strasbourg Cedex 67087 France

4. School of Chemistry University of Southampton Southampton SO171BJ UK

5. CNRS ISCR‐UMR 6226 Université de Rennes F‐35000 Rennes France

6. Department of Chemistry Seoul National University 08826 Seoul South Korea

7. Department of Engineering Physics McMaster University 1280 Main Street West Hamilton L8S4L7 Canada

Abstract

AbstractPhotoactive transition‐metal complexes are luminophores combining high photostability and long luminescence lifetimes. However, reduced optical performance in aqueous solutions has limited their use in biological systems. Herein, the physicochemical and photophysical properties and bioimaging compatibility of Re diimine complexes and near‐infrared (NIR) emitting Cy5 dyes coencapsulated in polymer nanoparticles (NPs) are investigated. By varying the polymers, NPs with sizes from 20 to 70 nm and encapsulating ≤ 40 wt.% of Re complexes, i.e., ≈11 000 Re complexes per NP, are obtained. The photoluminescence (PL) quantum yields of the Re complexes increase eightfold to ≈50% upon encapsulation (vs 6–7% in acetonitrile), resulting in PL brightness up to 108 m−1 cm−1 and PL lifetimes of 3–4 µs. Coencapsulation of Cy5 yields very bright NIR emission upon Re complex excitation. Very close Re‐to‐Cy5 donor–acceptor distances down to ≤2 nm and FRET efficiencies over 90% are confirmed by PL lifetime measurements. The Re‐Cy5 NPs enter mammalian cells for high‐contrast PL imaging in both visible and NIR. This detailed characterization provides a better understanding of the photophysical properties of the transition‐metal‐dye FRET NPs and presents a vital step toward the efficient design of a new class of bright luminescent NP probes.

Funder

Centre National de la Recherche Scientifique

European Regional Development Fund

Royal Society of Chemistry

Fondation Pour la Recherche en Chimie

Agence Nationale de la Recherche

Publisher

Wiley

Subject

Industrial and Manufacturing Engineering,Mechanics of Materials,General Materials Science

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