1. Academic Validation
  2. Concise enantioselective total syntheses of (+)-homochelidonine, (+)-chelamidine, (+)-chelidonine, (+)-chelamine and (+)-norchelidonine by a Pd II-catalyzed ring-opening strategy

Concise enantioselective total syntheses of (+)-homochelidonine, (+)-chelamidine, (+)-chelidonine, (+)-chelamine and (+)-norchelidonine by a Pd II-catalyzed ring-opening strategy

  • Chemistry. 2008;14(7):2112-24. doi: 10.1002/chem.200701775.
Matthew J Fleming 1 Helen A McManus Alena Rudolph Walter H Chan Jérémy Ruiz Chris Dockendorff Mark Lautens
Affiliations

Affiliation

  • 1 Department of Chemistry, Davenport Chemical Laboratories, University of Toronto, 80 St. George St., Toronto, ON M5S 3H6, Canada.
Abstract

New enantioselective syntheses of the B/C hexahydrobenzo[c]phenanthridine Alkaloids (+)-homochelidonine, (+)-chelamidine, (+)-chelidonine, (+)-chelamine, and (+)-norchelidonine are described. Our rapid and convergent route to this class of natural products involved the development and application of a Pd II-catalyzed asymmetric ring-opening reaction of a meso-azabicyclic alkene with an aryl boronic acid as the key step. By screening a variety of functionalized ortho-substituted aryl boronic acids, chiral ligands and reaction conditions we were able to prepare the requisite cis-1-amino-2-aryldihydronaphthalenes in high yield and in up to 90 % ee. Early attempts to complete the synthesis of (+)-homochelidonine using an N-Boc azabicyclic alkene are described in full. The successful route required a protecting group alteration followed by B ring formation and then stereoselective installation of the C-11 syn-hydroxy group by regioselective epoxide ring-opening using a hydride source. Ring-opening of the same epoxide intermediate with water ultimately led to the synthesis of (+)-chelamidine. The same strategy was then used to synthesize the Other structurally similar B/C hexahydrobenzo[c]phenanthridine Alkaloids, (+)-chelidonine, (+)-chelamidine, and (+)-norchelidonine.

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