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David Y W Lee

4 papers in the library · 11 citations · publishing 2005-2010

Papers

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Synthesis and biological evaluation of C-2 halogenated analogs of salvinorin A.

Bioorganic & Medicinal Chemistry Letters October 1, 2010 David Y W Lee, Lu Yang, Wei Xu et al.

Salvinorin A (1), the main active ingredient of Salvia divinorum, is a potent and selective κ opioid receptor (KOPR) agonist. Based on the SAR, its C-2 position is one of the key binding sites and has very little space tolerance (3-4 carbons atoms) and limited to only lipophilic groups. In our attempt to prepare PET brain imaging agent for mapping KOPR, a series of C-2 halogenated analogs have...

Novel neoclerodane diterpene derivatives from the smoke of salvinorin A.

Tetrahedron Letters September 29, 2010 Zhongze Ma, Gang Deng, David Y W Lee 11 citations

Salvinorin A is a naturally-occurring potent and selective kappa opioid receptor agonist, and smoking salvinorin A produces the most intense hallucinogenic effects in human. Eight neoclerodane diterpene derivatives were isolated from the smoke of salvinorin A, and their structures were identified by spectroscopic methods. The major structural changes include epimerizations, eliminations, and...

Synthesis and biological evaluation of C-12 triazole and oxadiazole analogs of salvinorin A.

Bioorganic & Medicinal Chemistry Letters March 1, 2009 Lu Yang, Wei Xu, Feng Chen et al.

Salvinorin A (1), the main active ingredient of Salvia divinorum, is a potent and selective kappa-opioid receptor (KOPR) agonist. A series of C-12 triazole analogs and the oxadiazole (4) analog of 1 are synthesized and screened for binding affinity at kappa, mu (MOPR), or delta (DOPR). Surprisingly, all triazole analogs have shown negligible binding affinity at opioid receptors and the...

New neoclerodane diterpenoids isolated from the leaves of Salvia divinorum and their binding affinities for human kappa opioid receptors.

Bioorganic & medicinal chemistry October 1, 2005 David Y W Lee, Zhongze Ma, Lee-Yuan Liu-Chen et al.

Bioactivity-guided fractionation of the leaves of Salvia divinorum has resulted in the isolation of three new neoclerodane diterpenoids: divinatorin D (1), divinatorin E (2), and salvinorin G (3), together with 10 known terpenoids, divinatorin C (4), hardwickiic acid (5), salvinorin-A (6), -B (7), -C (8), -D (9), -E (10), and -F (11), presqualene alcohol (12), and (E)-phytol (13). The...