Publication | Closed Access
Practical and Highly Enantioselective Ring Opening of Cyclic <i>Meso</i>-Anhydrides Mediated by Cinchona Alkaloids
139
Citations
54
References
2000
Year
Bioorganic ChemistryBiochemistryCinchona AlkaloidsActive HemiestersProchiral Cyclic AnhydridesCinchona Alkaloid-mediated OpeningNatural SciencesMedicineOrganic ChemistryStereoselective SynthesisChemistryHeterocycle ChemistryPharmacologySynthetic ChemistryEnantioselective SynthesisDrug DiscoveryNatural Product Synthesis
The cinchona alkaloid-mediated opening of prochiral cyclic anhydrides in the presence of methanol leading to optically active hemiesters is described. Very structurally diverse anhydrides are converted into their corresponding methyl monoesters, and either enantiomer can be obtained with up to 99% ee by using quinine or quinidine as directing additive. After the reaction, the alkaloids can be recovered almost quantitatively and reused without loss of enantioselectivity. Additionally, a catalytic protocol which permits the substoichiometric use of quinidine in the presence of easily accessible pentamethylpiperidine (pempidine) is presented.
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