| Literature DB >> 32435370 |
Lorella Pasquinucci1, Carmela Parenti2, M Carmen Ruiz-Cantero3,4, Zafiroula Georgoussi5, Paschalina Pallaki5, Enrique J Cobos3,4, Emanuele Amata1, Agostino Marrazzo1, Orazio Prezzavento1, Emanuela Arena1, Maria Dichiara1, Loredana Salerno1, Rita Turnaturi1.
Abstract
Modifications at the basic nitrogen of the benzomorphan scaffold allowed the development of compounds able to segregate physiological responses downstream of the receptor signaling, opening new possibilities in opioid drug development. Alkylation of the phenyl ring in the N-substituent of the MOR-agonist/DOR-antagonist LP1 resulted in retention of MOR affinity. Moreover, derivatives 7a, 7c, and 7d were biased MOR agonists toward ERK1,2 activity stimulation, whereas derivative 7e was a low potency MOR agonist on adenylate cyclase inhibition. They were further screened in the mouse tail flick test and PGE2-induced hyperalgesia and drug-induced gastrointestinal transit.Entities:
Year: 2020 PMID: 32435370 PMCID: PMC7236032 DOI: 10.1021/acsmedchemlett.9b00549
Source DB: PubMed Journal: ACS Med Chem Lett ISSN: 1948-5875 Impact factor: 4.345