Kappa-opioid receptor-selective dicarboxylic ester-derived salvinorin A ligands.
Prabhakar R Polepally, Kate White, Eyal Vardy, Bryan L Roth, Daneel Ferreira, Jordan K Zjawiony
Bioorganic & medicinal chemistry letters May 15, 2013 DOI: 10.1016/j.bmcl.2013.03.111 via PubMed
Summary
AI-generated from the abstractSalvinorin A, the active ingredient in the hallucinogenic plant Salvia divinorum, is nature's most potent hallucinogen and selectively activates the κ-opioid receptor. To explore how these compounds bind to specific receptors, researchers synthesized a series of dicarboxylic ester derivatives of salvinorin A and tested their binding affinity at κ-, δ-, and μ-opioid receptors. Most of the new compounds showed high affinity for the κ-opioid receptor. The methyl malonyl derivative 4 had the strongest binding, with a Ki of 2 nM, while analogues 5, 7, and 14 also exhibited significant affinity, with Ki values of 21, 36, and 39 nM respectively. These findings provide insights into brain chemistry and ligand-receptor interactions.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Topics | Salvia divinorum |
| Keywords | Hallucinogen Derivatives One particular compound These compounds |
| Citations | 24 |
| Key finding | Most dicarboxylic ester derivatives of salvinorin A show high binding affinity to the κ-opioid receptor, with methyl malonyl derivative 4 having the highest affinity (Ki=2 nM). |
Abstract
Salvinorin A, the active ingredient of the hallucinogenic plant Salvia divinorum is the most potent known naturally occurring hallucinogen and is a selective κ-opioid receptor agonist. To better understand the ligand-receptor interactions, a series of dicarboxylic ester-type of salvinorin A derivatives were synthesized and evaluated for their binding affinity at κ-, δ- and μ-opioid receptors. Most of the analogues show high affinity to the κ-opioid receptor. Methyl malonyl derivative 4 shows the highest binding affinity (Ki=2nM), analogues 5, 7, and 14 exhibit significant affinity for the κ-receptor (Ki=21, 36 and 39nM).