AI Article Synopsis

  • The Heck-oxyarylation process produced two types of compounds from racemic chromene derivatives: major 6-naphthylpterocarpans and minor methanodibenzo derivatives.
  • Antiproliferative testing showed that specific 6-naphthylpterocarpans had low micromolar IC50 values against human cancer cell lines, indicating strong potential for cancer treatment.
  • Enantiomers of the compounds were separated using HPLC, and their configurations were analyzed through calculations and spectra, linking their properties to specific structural formations.

Article Abstract

The Heck-oxyarylation of racemic 2-(1-naphthyl)- and 2-(2-naphthyl)-2H-chromene derivatives were carried out resulting diastereoselectively in (6S*,6aR*,11aR*)-6-(1-naphthyl)- and 6-(2-naphthyl)-pterocarpans as major products and bridged (6R*,12R*)-6,12-methanodibenzo[d,g][1,3]dioxocine derivatives as minor products. Antiproliferative activity of two 6-naphthylpterocarpans was identified by MTT assay against A2780 and WM35 human cancer cell lines with low micromolar IC50 values. The measured 0.80 and 3.51 μM IC50 values of the (6S*,6aR*,11aR*)-6-(1-naphthyl)pterocarpan derivative with 8,9-methylenedioxy substitution represent the best activities in the pterocarpan family. Enantiomers of the pterocarpan and dioxocine derivatives and their chiral 2-naphthylchroman-4-one and 2-naphthyl-2H-chromene precursors were separated by HPLC using chiral stationary phase. HPLC-ECD spectra were recorded and absolute configuration and low-energy solution conformations were determined by TDDFT-ECD calculations. Characteristic ECD transitions of the separated enantiomers were correlated with their absolute configuration.

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Source
http://dx.doi.org/10.1039/d0ob00110dDOI Listing

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