GABAB-Agonistic Activity of Certain Baclofen Homologues
Mohamed I. Attia, Claus Herdeis, Hans Bräuner‐Osborne
Abstract
Open-access reader
Mohamed I. Attia, Claus Herdeis, Hans Bräuner‐Osborne
Abstract
Open-access reader
Baclofen (1) is a potent and selective agonist for bicuculline-insensitive GABA(B) receptors and is used clinically as an antispastic and muscle relaxant agent. In the search for new bioactive chemical entities that bind specifically to GABA(B) receptors, we report here the synthesis of certain baclofen homologues, namely (R,S)-5-amino-3-arylpentanoic acid hydrochlorides (R,S)-1a-h as well as (R,S)-5-amino-3-methylpentanoic acid [(RS)-1i] to be evaluated as GABA(B)R agonists. Compound 1a is an agonist to GABA(B) receptors with an EC₅₀ value of 46 μM on tsA201 cells transfected with GABA(B1b)/GABA(B2)/Gqz5, being the most active congener among all the synthesized compounds.
OpenAlex reports 14 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Baclofen (1) is a potent and selective agonist for bicuculline-insensitive GABA(B) receptors and is used clinically as an antispastic and muscle relaxant agent. In the search for new bioactive chemical entities that bind specifically to GABA(B) receptors, we report here the synthesis of certain baclofen homologues, namely (R,S)-5-amino-3-arylpentanoic acid hydrochlorides (R,S)-1a-h as well as (R,S)-5-amino-3-methylpentanoic acid [(RS)-1i] to be evaluated as GABA(B)R agonists. Compound 1a is an agonist to GABA(B) receptors with an EC₅₀ value of 46 μM on tsA201 cells transfected with GABA(B1b)/GABA(B2)/Gqz5, being the most active congener among all the synthesized compounds.
Key concepts: Baclofen, GABAB receptor, Agonist, Chemistry, Muscle relaxant, Receptor, Pharmacology, Bicuculline