| Literature DB >> 33769596 |
Anna-Lena Leistner1, Susanne Kirchner1, Johannes Karcher1, Tobias Bantle1, Mariam L Schulte1, Peter Gödtel1, Christian Fengler2, Zbigniew L Pianowski1,3.
Abstract
Molecular photoswitches triggered with red or NIR light are optimal for photomodulation of complex biological systems, including efficient penetration of the <span class="Species">human body for therapeutic purposes ("therapeutic window"). Yet, they are rarely reported, and even more rarely functional under aqueous conditions. In this work, fluorinated azobenzenes are shown to exhibit efficient E→Z photoisomerization with red light (PSS660nm >75 % Z) upon conjugation with unsaturated substituents. Initially demonstrated for aldehyde groups, this effect was also observed in a more complex structure by incorporating the chromophore into a cyclic dipeptide with propensity for self-assembly. Under physiological conditions, the latter molecule formed a supramolecular material that reversibly changed its viscosity upon irradiation with red light. Our observation can lead to design of new photopharmacology agents or phototriggered materials for in vivo use.Entities:
Keywords: azobenzene; photoswitches; red-light photoisomerization; therapeutic window
Year: 2021 PMID: 33769596 DOI: 10.1002/chem.202005486
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236