Published September 24, 2022 | Version public
Journal Article

Synthesis of enantioenriched 2,2-disubstituted pyrrolidines via sequential asymmetric allylic alkylation and ring contraction

Abstract

The synthesis of a variety of enantioenriched 2,2-disubstituted pyrrolidines is described. A stereogenic quaternary center is first formed utilizing an asymmetric allylic alkylation reaction of a benzyloxy imide, which can then be reduced to a chiral hydroxamic acid. This compound can then undergo a thermal "Spino" ring contraction to afford a carbamate protected 2,2-disubstituted pyrrolidine stereospecifically. These pyrrolidines can be further advanced to enantioenriched indolizidine compounds. This reaction sequence allows access to new molecules that could be useful in the development of pharmaceutical agents.

Additional Information

This work was supported by the NIH under NIH-NIGMS (R01GM080269 and R35GM145239) and the Heritage Medical Research Institute Investigator Program. E.L.G recognizes the NSF for a predoctoral research fellowship (No. DGE-1745301). Dr. David VanderVelde and Dr. Scott Virgil are acknowledged for assistance with structural determination and characterization.

Additional details

Identifiers

Eprint ID
117852
Resolver ID
CaltechAUTHORS:20221114-800492800.1

Funding

NIH
R01GM080269
NIH
R35GM145239
Heritage Medical Research Institute
NSF Graduate Research Fellowship
DGE-1745301

Dates

Created
2022-11-29
Created from EPrint's datestamp field
Updated
2022-11-29
Created from EPrint's last_modified field

Caltech Custom Metadata