Enantioselective Synthesis of Piperidine, Indolizidine, and Quinolizidine Alkaloids from a Phenylglycinol-Derived δ-Lactam
The Journal of Organic Chemistry2003Vol. 68(5), pp. 1919–1928
Citations Over TimeTop 1% of 2003 papers
Abstract
Starting from a common lactam, (3R,8aS)-5-oxo-3-phenyl-2,3,6,7,8,8a-hexahydro-5H-oxazolo[3,2-a]pyridine (1), or its enantiomer, the enantioselective synthesis of 2-alkylpiperidines and cis- and trans-2,6-dialkylpiperidines is reported. The potential of this approach is illustrated by the synthesis of the piperidine alkaloids (R)-coniine, (2R,6S)-dihydropinidine, (2R,6R)-lupetidine, and (2R,6R)-solenopsin A, the indolizidine alkaloids (5R,8aR)-indolizidine 167B and (3R,5S,8aS)-monomorine I, and the nonnatural base (4R,9aS)-4-methylquinolizidine.
Related Papers
- → Indolizidine and quinolizidine alkaloids(2003)89 cited
- → Synthesis of 6-substituted tetrahydropyridinones and cyclization to indolizidine and quinolizidine structures(2003)32 cited
- → A convenient allylsilane-N-acyliminium route toward indolizidine and quinolizidine alkaloids(2007)23 cited
- → Pyrrolizidine, Quinolizidine, and Indolizidine Alkaloids(1998)14 cited
- → A Straightforward Route to Indolizidine and Quinolizidine Analogs as new Potential Antidiabetics(2003)1 cited