4.6 Article

Stability and Photoisomerization of Stilbenes Isolated from the Bark of Norway Spruce Roots

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MOLECULES
卷 26, 期 4, 页码 -

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MDPI
DOI: 10.3390/molecules26041036

关键词

stilbenes; spruce bark; UV-light; fluorescent light; photoisomerization; trans to cis isomerization; phenanthrenes; astringin; piceid; isorhapontin; piceatannol; isorhapontigenin

资金

  1. Erasmus Mundus ASC-master program

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Stilbenes, major polyphenolic compounds of the bark of Norway spruce, have potential applications as drugs, preservatives, and other functional ingredients due to their antioxidative, antibacterial, and antifungal properties. This study investigated the stability of stilbenes under UV and fluorescent light exposure, discovering novel compounds formed during the experiments.
Stilbenes or stilbenoids, major polyphenolic compounds of the bark of Norway spruce (Picea abies L. Karst), have potential future applications as drugs, preservatives and other functional ingredients due to their antioxidative, antibacterial and antifungal properties. Stilbenes are photosensitive and UV and fluorescent light induce trans to cis isomerisation via intramolecular cyclization. So far, the characterizations of possible new compounds derived from trans-stilbenes under UV light exposure have been mainly tentative based only on UV or MS spectra without utilizing more detailed structural spectroscopy techniques such as NMR. The objective of this work was to study the stability of biologically interesting and readily available stilbenes such as astringin and isorhapontin and their aglucones piceatannol and isorhapontigenin, which have not been studied previously. The effects of fluorescent and UV light and storage on the stability of trans stilbenes were assessed and the identification and characterisation of new compounds formed during our experiments were carried out by chromatographic (HPLC, GC) and spectroscopic techniques (UV, MS, NMR). The stilbenes undergo a trans to cis isomerisation under extended UV irradiation by intramolecular cyclisation (by the formation of a new C-C bond and the loss of two hydrogens) to phenanthrene structures. The characterised compounds are novel and not described previously.

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