Antiproliferative hydroxy-fatty acids from the fodder legume Stylosanthes guianensis

  • Marco CLERICUZIO
  • , Bruno Pietro BURLANDO
  • , Barbara Borghesi
  • , Annalisa Salis
  • , Gianluca Damonte
  • , Stefania Ribulla
  • , Laura Cornara

Risultato della ricerca: Contributo su rivistaArticolo in rivistapeer review

Abstract

Stylosanthes guianensis is a fodder legume native from South America and widely grown worldwide. Dried plant material was purchased on the web and taxonomically identified by light and SEM microscopy, and morphological analysis of plants germinated from seeds. The plant was extracted with dichloromethane:2-propanol (9:1). Bioguided fractionation using calcein-AM cytotoxicity assay on HeLa and A431 tumor cells allowed to isolate a lipophilic fraction, endowed with strong cytotoxicity. By means of 1- and 2-D NMR, HPLC–MS, and HR-ESIMS it could be seen that the fraction was an inseparable mixture of complex lipids, mainly consisting of esterified 3-hydroxy fatty acids. Acidic methanolysis of the mixture yielded 3-OH C10 and C12 carboxylic acids, together with palmitic, stearic, and arachidonic acids. Mass values indicate the presence of dimeric and trimeric combinations of 3-hydroxy, C10/C12 acids, and C16/C18/C20 acids, linked via ester bond. Monomeric hydroxyl-fatty acids were also observed, in particular derivatives of mono-hydroxy and di-hydroxy linolenic, linoleic, and oleic acids. 3-O-acylated, esterified fatty acids are unusual in higher plants, and recall motifs of Gram-negative endotoxin lipid A. These oxylipins are likely to be responsible for the antiproliferative activity of S. guianensis, suggesting possible use of the plant in the development of antitumor drugs.
Lingua originaleInglese
pagine (da-a)157-164
Numero di pagine8
RivistaJournal of Pharmaceutical and Biomedical Analysis
Volume141
DOI
Stato di pubblicazionePubblicato - 2017

Keywords

  • 3-Hydroxy fatty acids
  • 3003
  • A431 cells
  • Analytical Chemistry
  • Clinical Biochemistry
  • Drug Discovery3003 Pharmaceutical Science
  • HPLC–MS
  • HeLa cells
  • Oxylipins
  • Spectroscopy

Fingerprint

Entra nei temi di ricerca di 'Antiproliferative hydroxy-fatty acids from the fodder legume Stylosanthes guianensis'. Insieme formano una fingerprint unica.

Cita questo