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Manipulating Charge-Transfer States in BODIPYs: A Model Strategy to Rapidly Develop Photodynamic Theragnostic Agents.

Josué JiménezRuth Prieto-MonteroBeatriz L MarotoFlorencio MorenoMaría J OrtizAinhoa Oliden-SánchezIñigo López-ArbeloaVirginia Martínez-MartínezSantiago de la Moya
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2019)
On the basis of a family of BINOL (1,1'-bi-2-naphthol)-based O-BODIPY (dioxyboron dipyrromethene) dyes, it is demonstrated that chemical manipulation of the chromophoric push-pull character, by playing with the electron-donating capability of the BINOL moiety (BINOL versus 3,3'-dibromoBINOL) and with the electron-acceptor ability of the BODIPY core (alkyl substitution degree), is a workable strategy to finely balance fluorescence (singlet-state emitting action) versus the capability to photogenerate cytotoxic reactive oxygen species (triplet-state photosensitizing action). It is also shown that the promotion of a suitable charge-transfer character in the involved chromophore upon excitation enhances the probability of an intersystem crossing phenomenon, which is required to populate the triple state enabling singlet oxygen production. The reported strategy opens up new perspectives for rapid development of smarter agents for photodynamic theragnosis, including heavy-atom-free agents, from a selected organic fluorophore precursor.
Keyphrases
  • energy transfer
  • fluorescent probe
  • reactive oxygen species
  • quantum dots
  • living cells
  • solar cells
  • cancer therapy
  • electron transfer
  • molecular dynamics
  • ionic liquid
  • single molecule
  • sensitive detection