Photoswitchable neurotransmitters of ionotropic kainate receptors were synthesized by tethering a glutamate moiety to disubstituted C2-bridged azobenzenes, which were prepared through a novel methodology that allows access to diazocines with higher yields and versatility. Because of the singular properties of these photochromes, photoisomerizable compounds were obtained with larger thermal stability for their inert cis isomer than for their biologically activity trans state. This enabled selective neuronal firing upon irradiation without background activity in the dark
Azobenzenes are the most widely studied photoswitches, and have become popular optical probes for bi...
Manipulation of neuronal activity using two-photon excitation of azobenzene photoswitches with near...
Diazocines, bridged azobenzenes, exhibit superior photophysical properties compared to parent azoben...
Photoswitchable neurotransmitters of ionotropic kainate receptors were synthesized by tethering a gl...
The development of artificial photoswitches, which can change their configuration upon activation wi...
Incorporation of the azobenzene derivative <i>gluazo</i>, a synthetic photochromic ligand, into a ka...
π-Conjugated azobenzene derivatives were reported to couple azo moieties with aryl fluorophore. Usin...
Azobenzenes are robust, reliable, and easy to synthesize photochromic switches. However, their high ...
Diazocines are bridged azobenzenes with phenyl rings connected by a CH2–CH2 group. Despite this rath...
Photoswitchable neurotransmitter receptors are powerful tools for precise manipulation of neural sig...
The use of azobenzene photoswitches has become a dependable method for rapid and exact modulation of...
Despite the power of photopharmacology for interrogating signaling proteins, many photopharmacologic...
Azobenzenes are versatile photoswitches that have found widespread use in a variety of fields, rangi...
A new azobenzene-based photoswitch, <b>2</b>, has been designed to enable optical control of ionotro...
The use of azobenzene photoswitches has become a dependable method for rapid and exact modulation of...
Azobenzenes are the most widely studied photoswitches, and have become popular optical probes for bi...
Manipulation of neuronal activity using two-photon excitation of azobenzene photoswitches with near...
Diazocines, bridged azobenzenes, exhibit superior photophysical properties compared to parent azoben...
Photoswitchable neurotransmitters of ionotropic kainate receptors were synthesized by tethering a gl...
The development of artificial photoswitches, which can change their configuration upon activation wi...
Incorporation of the azobenzene derivative <i>gluazo</i>, a synthetic photochromic ligand, into a ka...
π-Conjugated azobenzene derivatives were reported to couple azo moieties with aryl fluorophore. Usin...
Azobenzenes are robust, reliable, and easy to synthesize photochromic switches. However, their high ...
Diazocines are bridged azobenzenes with phenyl rings connected by a CH2–CH2 group. Despite this rath...
Photoswitchable neurotransmitter receptors are powerful tools for precise manipulation of neural sig...
The use of azobenzene photoswitches has become a dependable method for rapid and exact modulation of...
Despite the power of photopharmacology for interrogating signaling proteins, many photopharmacologic...
Azobenzenes are versatile photoswitches that have found widespread use in a variety of fields, rangi...
A new azobenzene-based photoswitch, <b>2</b>, has been designed to enable optical control of ionotro...
The use of azobenzene photoswitches has become a dependable method for rapid and exact modulation of...
Azobenzenes are the most widely studied photoswitches, and have become popular optical probes for bi...
Manipulation of neuronal activity using two-photon excitation of azobenzene photoswitches with near...
Diazocines, bridged azobenzenes, exhibit superior photophysical properties compared to parent azoben...