A series of new pyridazin-3(2H)-one derivatives (3 and 4) were evaluated for their in vitro affinity toward both alpha (1)- and alpha (2)-adrenoceptors by radioligand receptor binding assays. All target compounds showed good affinities for the al-adrenoceptor, with K-i values in the low nanomolar range. The polymethylene chain constituting the spacer between the furoylpiperazinyl pyridazinone and the arylpiperazine moiety was shown to influence the affinity and selectivity of these compounds. Particularly, a gradual increase in affinity was observed by lengthening the polymethylene chain up to a maximum of seven carbon atoms. In addition, compound 3k, characterized by a very interesting alpha (1)-AR affinity (1.9 nM), was also shown to be a highly selective alpha (1)-AR antagonist, the affinity ratio for alpha (2)- and alpha (1)-adrenoceptors being 274. To gain insight into the structural features required for al antagonist activity, the pyridazinone derivatives were submitted to a pharmacophore generation procedure using the program Catalyst. The resulting pharmacophore model showed high correlation and predictive power. It also rationalized the relationships between structural properties and biological data of, and external to, the pyridazinone class.
Barbaro, R., Betti, L., Botta, M., Corelli, F., Giannaccini, G., Maccari, L., et al. (2001). Synthesis, Biological Evaluation, and Pharmacophore Generation of New Pyridazinone Derivatives with Affinity Toward alpha1- and alpha2- Adrenoceptors. JOURNAL OF MEDICINAL CHEMISTRY, 44(13), 2118-2132 [10.1021/jm010821u].
Synthesis, Biological Evaluation, and Pharmacophore Generation of New Pyridazinone Derivatives with Affinity Toward alpha1- and alpha2- Adrenoceptors
Botta, Maurizio;Corelli, Federico;Manetti, Fabrizio;
2001-01-01
Abstract
A series of new pyridazin-3(2H)-one derivatives (3 and 4) were evaluated for their in vitro affinity toward both alpha (1)- and alpha (2)-adrenoceptors by radioligand receptor binding assays. All target compounds showed good affinities for the al-adrenoceptor, with K-i values in the low nanomolar range. The polymethylene chain constituting the spacer between the furoylpiperazinyl pyridazinone and the arylpiperazine moiety was shown to influence the affinity and selectivity of these compounds. Particularly, a gradual increase in affinity was observed by lengthening the polymethylene chain up to a maximum of seven carbon atoms. In addition, compound 3k, characterized by a very interesting alpha (1)-AR affinity (1.9 nM), was also shown to be a highly selective alpha (1)-AR antagonist, the affinity ratio for alpha (2)- and alpha (1)-adrenoceptors being 274. To gain insight into the structural features required for al antagonist activity, the pyridazinone derivatives were submitted to a pharmacophore generation procedure using the program Catalyst. The resulting pharmacophore model showed high correlation and predictive power. It also rationalized the relationships between structural properties and biological data of, and external to, the pyridazinone class.File | Dimensione | Formato | |
---|---|---|---|
2001JMedChemAdrenergici.pdf
non disponibili
Tipologia:
Post-print
Licenza:
NON PUBBLICO - Accesso privato/ristretto
Dimensione
247.65 kB
Formato
Adobe PDF
|
247.65 kB | Adobe PDF | Visualizza/Apri Richiedi una copia |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.
https://hdl.handle.net/11365/21101
Attenzione
Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo