Literature DB >> 31368572

Minor compounds from virgin olive oil attenuate LPS-induced inflammation via visfatin-related gene modulation on primary human monocytes.

Maria E Martin1, Maria C Millan-Linares2,3, Maria C Naranjo3, Rocío Toscano3,4, Rocio Abia3, Francisco J G Muriana3, Beatriz Bermudez1, Sergio Montserrat-de la Paz4.   

Abstract

We have analyzed the effects of minor compounds found in the unsaponifiable fraction (UF) and in the phenolic fraction (PF) of virgin olive oil (VOO) on LPS-induced inflammatory response via visfatin modulation in human monocytes. For this purpose, monocytes were incubated with UF and PF at different concentrations and the pro-inflammatory stimulus LPS for 24 hr; squalene (SQ) and hydroxytyrosol (HTyr), the main components in UF and PF, respectively, were also used. The relative expression of both pro-inflammatory and anti-inflammatory genes, as well as other genes related to the NAD+-biosynthetic pathway was evaluated by RT-qPCR; and the secretion of some of these markers was assessed by ELISA procedures. We found that UF, SQ, PF, and HTyr prevented from LPS-induced dysfunctional gene expression and secretion via visfatin-related gene modulation in human monocytes. These findings unveil a potential beneficial role for minor compounds of VOO in the prevention of inflammatory-disorders. PRACTICAL APPLICATION: In this project, potential health benefits of VOO micronutrients (unsaponifiable and phenolic compounds) were confirmed through anti-inflammatory assays. Our results reveal new interesting researching goals concerning nutrition by considering the role of bioactive VOO compounds in the prevention and progress of diseases related to inflammation.
© 2019 Wiley Periodicals, Inc.

Entities:  

Keywords:  NAMPT; olive oil; phenols; unsaponifiable; visfatin

Year:  2019        PMID: 31368572     DOI: 10.1111/jfbc.12941

Source DB:  PubMed          Journal:  J Food Biochem        ISSN: 0145-8884            Impact factor:   2.720


  2 in total

1.  Acyclic Diterpene Phytol from Hemp Seed Oil (Cannabis sativa L.) Exerts Anti-Inflammatory Activity on Primary Human Monocytes-Macrophages.

Authors:  Carmen M Claro-Cala; Elena Grao-Cruces; Rocio Toscano; Maria C Millan-Linares; Sergio Montserrat-de la Paz; Maria E Martin
Journal:  Foods       Date:  2022-08-07

2.  Liposomes Containing Amaranth Unsaponifiable Matter and Soybean Lunasin Suppress ROS Production in Fibroblasts and Reduced Interleukin Production in Macrophages.

Authors:  Gloria Dávila-Ortiz; Erick Damian Castañeda-Reyes; Carlos Ignacio Juárez-Palomo; María de Jesús Perea-Flores; Ricardo Pérez-Pastén-Borja; Yazmín Karina Márquez-Flores; Elvira González de Mejía
Journal:  Int J Environ Res Public Health       Date:  2022-09-16       Impact factor: 4.614

  2 in total

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