Skip to content

Ryan A Shenvi

8 papers in the library · 37 citations · publishing 2017-2024

Papers

Sort Most recent Most cited

Natural Product Synthesis in the 21st Century: Beyond the Mountain Top

ACS Central Science February 14, 2024 Ryan A Shenvi 37 citations

Research into natural products emerged from humanity's curiosity about the nature of matter and its role in the materia medica of diverse civilizations. Plants and fungi, in particular, supplied materials that altered behavior, perception, and well-being profoundly. Many active principles remain well-known today: strychnine, morphine, psilocybin, ephedrine. The potential to circumvent the...

A Route to Potent, Selective, and Biased Salvinorin Chemical Space.

ACS Central Science August 23, 2023 Sarah J Hill, Nathan Dao, Vuong Q. Dang et al.

The salvinorins serve as templates for next generation analgesics, antipruritics, and dissociative hallucinogens via selective and potent agonism of the kappa-opioid receptor (KOR). In contrast to most opioids, the salvinorins lack basic amines and bind with high affinity and selectivity via complex polyoxygenated scaffolds that have frustrated deep-seated modification by synthesis. Here we...

Chemical syntheses of the salvinorin chemotype of KOR agonist.

Natural Product Reports November 18, 2020 Sarah J Hill, Aurélien U C M Brion, Ryan A Shenvi

Covering: 2000 to 2020 The hallucinogenic diterpene salvinorin A potently and selectively agonizes the human kappa-opioid receptor (KOR). Its unique attributes-lack of a basic nitrogen, rapid brain penetrance, short half-life-combined with the potential of KOR as an emerging target for analgesics have stimulated extensive medicinal chemistry based on semi-synthesis from extracts of Salvia...

O6C-20-nor-salvinorin A is a stable and potent KOR agonist.

Bioorganic & Medicinal Chemistry Letters September 1, 2018 Shun Hirasawa, Min Cho, Tarsis F Brust et al.

Salvinorin A (SalA) is a potent and selective agonist of the kappa-opioid receptor (KOR), but its instability has frustrated medicinal chemistry efforts. Treatment of SalA with weak bases like DBU leads to C8 epimerization with loss of receptor affinity and signaling potency. Here we show that replacement of C20 with H and replacement of O6 with CH2 stabilizes the SalA scaffold relative to its...

A Review of Salvinorin Analogs and their Kappa-Opioid Receptor Activity

Bioorganic & Medicinal Chemistry Letters March 12, 2018 Jeremy J Roach, Ryan A Shenvi

The plant metabolite salvinorin A potently and selectively agonizes the human kappa-opioid receptor, an emerging target for next-generation analgesics. Here we review analogs of the salvinorin chemotype and their effects on selectivity, affinity and potency. Extensive peripheral modifications using isolated salvinorin A have delivered a trove of SAR information. More deep-seated changes are now...

Dynamic Strategic Bond Analysis Yields a Ten-Step Synthesis of 20-nor-Salvinorin A, a Potent κ-OR Agonist.

ACS Central Science December 27, 2017 Jeremy J Roach, Yusuke Sasano, Cullen L. Schmid et al.

Salvinorin A (SalA) is a plant metabolite that agonizes the human kappa-opioid receptor (κ-OR) with high affinity and high selectivity over mu- and delta-opioid receptors. Its therapeutic potential has stimulated extensive semisynthetic studies and total synthesis campaigns. However, structural modification of SalA has been complicated by its instability, and efficient total synthesis has been...

Synthesis and Biological Evaluation of O6C-Salvinorin Alkyne Probes

Etienne Cotter, Giovanni Leoni, Nathan Dao et al.

The salvinorins represent a unique class of polyoxygenated, non-nitrogenous diterpenes that potently and selectively modulate the kappa-opioid receptor (KOR). We recently disclosed a de novo asymmetric synthesis of this scaffold that enabled the discovery of highly potent, biased analogs, including C11-alkynes designed for the CATCH (Clearing-Assisted Tissue Click Chemistry) assay. Here, we...

A route to potent, selective and biased salvinorin chemical space

Sarah J Hill, Nathan Dao, Vuong Q. Dang et al.

The salvinorins serve as templates for next generation analgesics, antipruritics and dissociative hallucinogens via selective and potent agonism of the kappa-opioid receptor (KOR). In contrast to most opioids, the salvinorins lack basic amines and bind with high affinity and selectivity via complex polyoxygenated scaffolds that have frustrated deep-seated modification by synthesis. Here we...