Donor–Acceptor
Stenhouse Adduct Displaying
Reversible Photoswitching in Water and Neuronal Activity
Posted on 2022-08-17 - 15:40
The interest in the photochromism and functional applications
of
donor–acceptor Stenhouse adducts (DASAs) soared in recent years
owing to their outstanding advantages and flexible design. However,
their low solubility and irreversible conversion in aqueous solutions
hampered exploring DASAs for biology and medicine. It is notably unknown
whether the barbiturate electron acceptor group retains the pharmacological
activity of drugs such as phenobarbital, which targets γ-aminobutyric
acid (GABA)-type A receptors (GABAARs) in the brain. Here,
we have developed the model compound DASA-barbital based on a scaffold
of red-switching second-generation DASAs, and we demonstrate that
it is active in GABAARs and alters the neuronal firing
rate in a physiological medium at neutral pH. DASA-barbital can also
be reversibly photoswitched in acidic aqueous solutions using cyclodextrin,
an approved ingredient of drug formulations. These findings clarify
the path toward the biological applications of DASAs and to exploit
the versatility displayed in polymers and materials science.
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Castagna, Rossella; Maleeva, Galyna; Pirovano, Deborah; Matera, Carlo; Gorostiza, Pau (2022). Donor–Acceptor
Stenhouse Adduct Displaying
Reversible Photoswitching in Water and Neuronal Activity. ACS Publications. Collection. https://doi.org/10.1021/jacs.2c04920