Fitoterapia 2014-12-01

A new acetophenone derivative from flowers of Helichrysum italicum (Roth) Don ssp. italicum.

Daniela Rigano, Carmen Formisano, Ester Pagano, Felice Senatore, Sonia Piacente, Milena Masullo, Raffaele Capasso, Angelo A Izzo, Francesca Borrelli

Index: Fitoterapia 99 , 198-203, (2014)

Full Text: HTML

Abstract

A new acetophenone derivative named gnaphaliol 9-O-propanoate (1) was isolated from the chloroform fraction of EtOH extract of Helichrysum italicum ssp. italicum flowers along with the five known acetophenones 12-acetoxytremetone (2), 13-(2-methylpropanoyloxy)toxol (3), [2,3-dihydro-2-[1-(hydroxymethyl)ethenyl]-5-benzofuranyl]-ethanone (4), 1-[2-[1-[(acetyloxy)methyl]ethenyl]-2,3-dihydro-3-hydroxy-5-benzofuranyl]-ethanone (5) and gnaphaliol (6). The structures of compounds 1-6 were elucidated by extensive spectroscopic methods including 1D- ((1)H and (13)C) and 2D-NMR (DQF-COSY, HSQC, HMBC, TOCSY and ROESY) experiments as well as ESIMS analysis. The isolated compounds were investigated for their cytotoxicity, anti-inflammatory and antioxidant properties. Biological assays on human colonic epithelial cells showed that compound 2 possessed antioxidant effects reducing reactive oxygen species (ROS) production. Copyright © 2014 Elsevier B.V. All rights reserved.


Related Compounds

Related Articles:

Neuropeptide Y in the noradrenergic neurones induces obesity and inhibits sympathetic tone in mice.

2015-04-01

[Acta Physiol. (Oxf.) 213(4) , 902-19, (2015)]

G-protein-coupled estrogen receptor 1 is anatomically positioned to modulate synaptic plasticity in the mouse hippocampus.

2015-02-11

[J. Neurosci. 35(6) , 2384-97, (2015)]

The Drosophila MAPK p38c regulates oxidative stress and lipid homeostasis in the intestine.

2014-09-01

[PLoS Genet. 10(9) , e1004659, (2014)]

Driving cartilage formation in high-density human adipose-derived stem cell aggregate and sheet constructs without exogenous growth factor delivery.

2014-12-01

[Tissue Eng. Part A 20(23-24) , 3163-75, (2014)]

Diclofenac toxicity in human intestine ex vivo is not related to the formation of intestinal metabolites.

2015-01-01

[Arch. Toxicol. 89(1) , 107-19, (2015)]

More Articles...