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A "Multi-Heavy-Atom" Approach toward Biphotonic Photosensitizers with Improved Singlet-Oxygen Generation Properties.

Margaux GallandTangui Le BahersAkos BanyaszNoëlle LascouxAlain DuperrayAlexei GrichineRaphaël TripierYannick GuyotMarie MaynadierChristophe NguyenMagali Gary-BoboChantal AndraudCyrille MonnereauOlivier Maury
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2019)
Two trispicolinate 1,4,7-triazacyclonane (TACN)-based ligands bearing three picolinate biphotonic antennae were synthetized and their Yb3+ and Gd3+ complexes isolated. One series differs from the other by the absence (L1 )/presence (L2 ) of bromine atoms on the antenna backbone, offering respectively improved optical and singlet-oxygen generation properties. Photophysical properties of the ligands, complexes and micellar Pluronic suspensions were investigated. Complexes exhibit high two-photon absorption cross-section combined either with NIR emission (Yb) or excellent 1 O2 generation (Gd). The very large intersystem crossing efficiency induced by the combination of bromine atom and heavy rare-earth element was corroborated with theoretical calculations. The 1 O2 generation properties of L2 Gd micellar suspension under two-photon activation leads to tumour cell death, suggesting the potential of such structures for theranostic applications.
Keyphrases
  • photodynamic therapy
  • cell death
  • energy transfer
  • molecular dynamics
  • high resolution
  • living cells
  • density functional theory
  • monte carlo
  • drug delivery
  • risk assessment
  • fluorescent probe
  • climate change