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Triplet–triplet annihilation upconversion followed by FRET for the red light activation of a photodissociative ruthenium complex in liposomes

Authors :
Askes, Sven H. C.
Kloz, Miroslav
Bruylants, Gilles
Kennis, John T. M.
Bonnet, Sylvestre
Askes, Sven H. C.
Kloz, Miroslav
Bruylants, Gilles
Kennis, John T. M.
Bonnet, Sylvestre
Source :
PCCP. Physical chemistry chemical physics, 17
Publication Year :
2015

Abstract

Upconversion is a promising way to trigger high-energy photochemistry with low-energy photons. However, combining upconversion schemes with non-radiative energy transfer is challenging because bringing several photochemically active components in close proximity results in complex multi-component systems where quenching processes may deactivate the whole assembly. In this work, PEGylated liposomes were prepared that contained three photoactive components: a porphyrin dye absorbing red light, a perylene moiety emitting in the blue, and a light-activatable ruthenium prodrug sensitive to blue light. Time-dependent spectroscopic studies demonstrate that singlet perylene excited states are non-radiatively transferred to the nearby ruthenium complex by Förster resonance energy transfer (FRET). Under red-light irradiation of the three-component membranes, triplet-triplet annihilation upconversion (TTA-UC) occurs followed by FRET, which results in a more efficient activation of the ruthenium prodrug compared to a physical mixture of two-component upconverting liposomes and liposomes containing only the ruthenium complex. This work represents a rare example where TTA-UC and Förster resonance energy transfer are combined to achieve prodrug activation in the phototherapeutic window.<br />SCOPUS: ar.j<br />info:eu-repo/semantics/published

Details

Database :
OAIster
Journal :
PCCP. Physical chemistry chemical physics, 17
Notes :
1 full-text file(s): application/pdf, French
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn933512035
Document Type :
Electronic Resource