The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coupled receptor pharmacology at the single cell and single molecule level demands the availability of high-quality fluorescent ligands. To this end, this study evaluated a new series of red-emitting ligands for the human β-adrenoceptor family. Upon the basis of the orthosteric ligands propranolol, alprenolol, and pindolol, the synthesized linker-modified congeners were coupled to the commercially available fluorophore BODIPY 630/650-X. This yielded high-affinity β-adrenoceptor fluorescent ligands for both the propranolol and alprenolol derivatives; however, the pindolol-based products displayed lower affinity. A fluorescent diethylene glycol lin...
Fluorescently labeled ligands are useful pharmacological research tools for studying receptor locali...
In this article, a single-label separation-free fluorescence technique is presented as a potential s...
Dopamine D1-like receptors are the most abundant type of dopamine receptors in the central nervous s...
The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coup...
he growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coupl...
The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coup...
The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coup...
Beta-adrenoceptors belong to the superfamily of G-protein coupled receptors (GPCR) and remain an imp...
We describe the synthesis of bordifluoropyrromethene (BODIPY), fluorescein, and related fluorescent ...
Visualization of the G-protein coupled receptor (GPCR) is of great importance for studying its funct...
Fluorescent ligands have found numerous applications for studying interactions of drug molecules wit...
Five potent, lipophilic beta-adrenoceptor antagonists (carvedilol, pindolol, toliprolol and fluorina...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
Dopamine D1-like receptors are the most abundant type of dopamine receptors in the central nervous s...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
Fluorescently labeled ligands are useful pharmacological research tools for studying receptor locali...
In this article, a single-label separation-free fluorescence technique is presented as a potential s...
Dopamine D1-like receptors are the most abundant type of dopamine receptors in the central nervous s...
The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coup...
he growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coupl...
The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coup...
The growing practice of exploiting noninvasive fluorescence-based techniques to study G protein-coup...
Beta-adrenoceptors belong to the superfamily of G-protein coupled receptors (GPCR) and remain an imp...
We describe the synthesis of bordifluoropyrromethene (BODIPY), fluorescein, and related fluorescent ...
Visualization of the G-protein coupled receptor (GPCR) is of great importance for studying its funct...
Fluorescent ligands have found numerous applications for studying interactions of drug molecules wit...
Five potent, lipophilic beta-adrenoceptor antagonists (carvedilol, pindolol, toliprolol and fluorina...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
Dopamine D1-like receptors are the most abundant type of dopamine receptors in the central nervous s...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
Fluorescently labeled ligands are useful pharmacological research tools for studying receptor locali...
In this article, a single-label separation-free fluorescence technique is presented as a potential s...
Dopamine D1-like receptors are the most abundant type of dopamine receptors in the central nervous s...