Related Experiment Video
Updated: Sep 10, 2025

Preparation of Enantiopure Non-Activated Aziridines and Synthesis of Biemamide B, D, and epiallo-Isomuscarine
Published on: June 13, 2022
Stereoselective Synthesis of Axially Chiral 5,5'-Linked bis-1-Arylisochromans with Antibacterial Activity
Zoltán Czenke1,2, Attila Mándi1, Gergely Miklós Fedics1,2
1Department of Organic Chemistry, University of Debrecen, P.O. Box 400, 4002 Debrecen, Hungary.
Abstract:
Inspired by naturally occurring bis-isochromans such as penicisteckins, we envisaged the first synthesis of biaryl-type bis-1-arylisochromans containing a stereogenic ortho-trisubstituted biaryl axis. We achieved the stereoselective synthesis of 5,5'-linked heterodimeric bis-isochromans containing both central and axial chirality elements by performing diastereoselective Suzuki-Miyaura biaryl coupling reactions on two optically active 1-arylpropan-2-ol derivatives, followed by two oxa-Pictet-Spengler cyclizations with aryl aldehydes or methoxymethyl chloride. We studied the diastereoselectivity of the cyclization step, separated the stereoisomeric products with chiral preparative HPLC and determined the absolute configuration through a combination of vibrational circular dichroism (VCD), NMR and single-crystal X-ray diffraction analysis. We demonstrated that different aryl groups could be introduced into the two isochroman subunits, since the dimethoxyaryl subunit reacted faster, enabling the two oxa-Pictet-Spengler cyclizations to be performed separately with different aryl aldehydes. We also explored the acid-catalyzed isomerization and oxidation to axially chiral ortho-quinones in order to produce stereoisomeric and oxidized analogs, respectively. We identified the antibacterial activity of our target bis-isochromans against Bacillus subtilis and Enterococcus faecalis with minimum inhibitory concentrations down to 4.0 and 0.5 μg/mL, respectively, which depend on the stereochemistry and substitution pattern of the bis-isochroman skeleton.
More Related Videos
Related Concept Videos
Prochirality
Molecules with Multiple Chiral Centers
Naming Enantiomers
Stereoisomerism of Cyclic Compounds
Radical Halogenation: Stereochemistry
Halogenation to form a new chiral center:
Diels–Alder Reaction Forming Cyclic Products: Stereochemistry

