Identificador persistente para citar o vincular este elemento:
http://hdl.handle.net/10662/21888
Títulos: | A novel agonist of the type 1 lysophosphatidic acid receptor (LPA1), UCM-05194, shows efficacy in neuropathic pain amelioration |
Autores/as: | González Gil, Inés Zian, Debora Vázquez Villa, Henar Hernández Torres, Gloria Martínez Vázquez, Rafael Fernando Khiar Fernández, Nora Rivera, Richard Kihara, Yasuyuki Devesa, Isabel Mathivanan, Sakthikumar Valle, Cristina Rosell del Zambrana Infantes, Emma Puigdomenech, María Cincilla, Giovanni Sánchez Martínez, Melchor Rodríguez de Fonseca, Fernando Ferrer Montiel, Antonio V. Chun, Jerold López Vales, Rubén López Rodríguez, María L. Ortega Gutiérrez, Silvia |
Palabras clave: | Agonists;Lipids;Receptors;Agonistas;Lípidos;Receptores |
Fecha de publicación: | 2020 |
Editor/a: | ACS Publications |
Resumen: | Neuropathic pain (NP) is a complex chronic pain state with a prevalence of almost 10% in the general population. Pharmacological options for NP are limited and slightly effective, so there is a need of developing more efficacious NP attenuating drugs. Activation of the type 1 lysophosphatidic acid (LPA1) receptor is a crucial factor in the initiation of NP. Hence, it is conceivable that a functional antagonism strategy could lead to NP mitigation. Here we describe a new series of LPA1 agonists among which derivative (S)-17 (UCM-05194) stands out as the most potent and selective LPA1 receptor agonist described so far (Emax=118%, EC50=0.24 μM, KD=19.6 nM; inactive at autotaxin and LPA2–6 receptors). This compound induces characteristic LPA1-mediated cellular effects and prompts the internalization of the receptor leading to its functional inactivation in primary sensory neurons and to an efficacious attenuation of the pain perception in an in vivo model of NP. |
Descripción: | Publicado en : Journal of Medicinal Chemistry 2020 63 (5), 2372-2390 DOI: 10.1021/acs.jmedchem.9b01287 |
URI: | http://hdl.handle.net/10662/21888 |
ISSN: | 0022-2623 |
Colección: | DQOIN - Artículos |
Archivos
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acs_jmedchem_9b01287_draft.pdf | 2,53 MB | Adobe PDF | Descargar |
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