Aurones: Interesting Natural and Synthetic Compounds with Emerging Biological Potential

Author:

Zwergel Clemens1,Gaascht François12,Valente Sergio1,Diederich Marc2,Bagrel Denyse1,Kirsch Gilbert1

Affiliation:

1. Laboratoire d'Ingenierie Moléculaire et Biochimie Pharmacologique, Institut Jean Barriol, Université Paul Verlaine-Metz, 1 Boulevard Arago, 57070 Metz, France

2. Laboratoire de Biologie Moléculaire et Cellulaire du Cancer, Hôpital Kirchberg, 9 rue Edward Steichen, L-2540 Luxembourg, Luxembourg

Abstract

Aurones [2-benzylidenebenzofuran-3(2H)-ones] are either natural or synthetic compounds, belonging to the flavonoid family. They are isomeric to flavones and provide a bright yellow color to the plants in which they occur. Today, a literature survey indicates that the related flavonoids have been studied not only for their physiological properties and effects on Nature, but also for their therapeutic potential. Aurones are recently attracting the interest of an increasing number of research groups, and, since the last review, some interesting advances have been made in understanding the aurones. In this review, we report the recent advances made on the synthetic routes towards aurones. We also highlight their activity in different biological areas, as well as applied genetic plant modifications to produce these colored compounds. Their synthesis, structure–activity relationships and the importance of the substitution pattern will also be mentioned. Finally, some aspects regarding the possible development of aurones will be discussed briefly.

Publisher

SAGE Publications

Subject

Complementary and alternative medicine,Plant Science,Drug Discovery,Pharmacology,General Medicine

Reference37 articles.

1. CodyV, MiddletonE. (1986) Plant flavonoids in biology and medicine: biochemical, pharmacological, and structure-activity relationships; Proceedings of a symposium held in Buffalo, New York, July 22 - 26, 1985. In Progress in Clinical and Biological Research. Liss, New York, USA.

2. Yellow flowers generated by expression of the aurone biosynthetic pathway

3. Phytoalexins

4. Synthesis and Insect Antifeedant Activity of Aurones against Spodoptera litura Larvae

5. Discovery of Benzylidenebenzofuran-3(2H)-one (Aurones) as Inhibitors of Tyrosinase Derived from Human Melanocytes

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