| Literature DB >> 28165162 |
Nerea Epelde-Elezcano1, Eduardo Palao2, Hegoi Manzano3, Alejandro Prieto-Castañeda2, Antonia R Agarrabeitia1, Andrea Tabero4, Angeles Villanueva4,5, Santiago de la Moya2, Íñigo López-Arbeloa1, Virginia Martínez-Martínez1, María J Ortiz2.
Abstract
The synthesis, photophysical characterization, and modeling of a new library of halogen-free photosensitizers (PS) based on orthogonal boron dipyrromethene (BODIPY) dimers are reported. Herein we establish key structural factors in order to enhance singlet oxygen generation by judiciously choosing the substitution patterns according to key electronic effects and synthetic accessibility factors. The photosensitization mechanism of orthogonal BODIPY dimers is demonstrated to be strongly related to their intrinsic intramolecular charge transfer (ICT) character through the spin-orbit charge-transfer intersystem crossing (SOCT-ISC) mechanism. Thus, singlet oxygen generation can be effectively modulated through the solvent polarity and the presence of electron-donating or withdrawing groups in one of the BODIPY units. The photodynamic therapy (PDT) activity is demonstrated by in vitro experiments, showing that selected photosensitizers are efficiently internalized into HeLa cells, exhibiting low dark toxicity and high phototoxicity, even at low PS concentration (0.05-5×10-6 m).Entities:
Keywords: biological activity; charge transfer; singlet oxygen; solvent effects; substituent effects
Year: 2017 PMID: 28165162 DOI: 10.1002/chem.201605822
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236