Abstract

We report on the synthesis of 4-hydroxycoumarin dimers 1–15 bearing an aryl substituent on the central linker and fused benzopyranocoumarin derivatives 16–20 and on their in vitro broad anti-DNA and RNA virus activity evaluations. The chemical identities and structure of compounds 1–20 were deduced from their homo- and heteronuclear NMR measurements whereas the conformational properties of 5, 14 and 20 were assessed by the use of 1D difference NOE enhancements. Unequivocal proof of the stereostructure of compounds 7, 9, 16 and 18 was obtained by single crystal X-ray diffraction method. The X-ray crystal structure analysis revealed that two 4-hydroxycoumarin moieties in the 4-trifluoromethylphenyl- and 2-nitrophenyl derivatives (compounds 7 and 9, respectively) are intramolecularly hydrogen-bonded between hydroxyl and carbonyl oxygen atoms. Consequently, the compounds 7 and 9 adopt conformations in which two 4-hydroxy-coumarin moieties are anti-disposed. Antiviral activity evaluation results indicated that the 4-bromobenzylidene derivative of bis-(4-hydroxycoumarin) (compound 3) possesses inhibitory activity against HSV-1 (KOS), HSV-2 (G), vaccinia virus and HSV-1 TK- KOS (ACVr) at a concentration of 9–12 μM and at a minimum cytotoxic concentration (MCC) greater than 20 μM. Compounds 4–6, 8, and 20 were active against feline herpes virus (50% effective concentration, EC50 = 5–8.1 μM), that is at a 4-7-fold lower concentration than the MCC.

Highlights

  • Numerous experimental studies indicate that natural and synthetic coumarins (2H-1-benzopyran-2ones) and their derivatives are endowed with excellent chemical reactivity and different bioactivity.the natural coumarins play an important role in plant biochemistry and physiology

  • The benzylidene-bis-(4-hydroxycoumarin) derivatives 1–15 and fused benzopyranocoumarin derivatives 16–20 were prepared by a sequence of reactions displayed in the Scheme 1

  • In the first step of the synthesis the aldol condensation of 4-hydroxycoumarin (4-HC) with an appropriately substituted aldehyde linker followed by dehydration of aldol product (AL) gave a chromone (CR)

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Summary

Introduction

Numerous experimental studies indicate that natural and synthetic coumarins (2H-1-benzopyran-2ones) and their derivatives are endowed with excellent chemical reactivity and different bioactivity. The natural coumarins play an important role in plant biochemistry and physiology. They act as antioxydants, enzyme inhibitors and precursors of toxic substances. They are involved in the actions of plant growth hormones and growth regulators, the control over the respiration and photosynthesis, as well as in the defense against various infections [1]. Most of the existing natural coumarins have been isolated from higher plants, some of them have been discovered in microorganisms, e.g., aminocoumarin antibiotics: Novobiocin, coumermycin A1 and chlorobiocin (produced by the actinomycete Streptomyces niveus) [2].

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