Cargando…

Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus

Essential oils (EOs) are mixtures of volatile compounds belonging to several chemical classes derived from aromatic plants using different distillation techniques. Recent studies suggest that the consumption of Mediterranean plants, such as anise and laurel, contributes to improving the lipid and gl...

Descripción completa

Detalles Bibliográficos
Autores principales: Schiavone, Valeria, Romasco, Tea, Di Pietrantonio, Nadia, Garzoli, Stefania, Palmerini, Carola, Di Tomo, Pamela, Pipino, Caterina, Mandatori, Domitilla, Fioravanti, Rossella, Butturini, Elena, Sabatino, Manuela, Baldassarre, Maria Pompea Antonia, Ragno, Rino, Pandolfi, Assunta, Di Pietro, Natalia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138528/
https://www.ncbi.nlm.nih.gov/pubmed/37108387
http://dx.doi.org/10.3390/ijms24087225
_version_ 1785032728134025216
author Schiavone, Valeria
Romasco, Tea
Di Pietrantonio, Nadia
Garzoli, Stefania
Palmerini, Carola
Di Tomo, Pamela
Pipino, Caterina
Mandatori, Domitilla
Fioravanti, Rossella
Butturini, Elena
Sabatino, Manuela
Baldassarre, Maria Pompea Antonia
Ragno, Rino
Pandolfi, Assunta
Di Pietro, Natalia
author_facet Schiavone, Valeria
Romasco, Tea
Di Pietrantonio, Nadia
Garzoli, Stefania
Palmerini, Carola
Di Tomo, Pamela
Pipino, Caterina
Mandatori, Domitilla
Fioravanti, Rossella
Butturini, Elena
Sabatino, Manuela
Baldassarre, Maria Pompea Antonia
Ragno, Rino
Pandolfi, Assunta
Di Pietro, Natalia
author_sort Schiavone, Valeria
collection PubMed
description Essential oils (EOs) are mixtures of volatile compounds belonging to several chemical classes derived from aromatic plants using different distillation techniques. Recent studies suggest that the consumption of Mediterranean plants, such as anise and laurel, contributes to improving the lipid and glycemic profile of patients with diabetes mellitus (DM). Hence, the aim of the present study was to investigate the potential anti-inflammatory effect of anise and laurel EOs (AEO and LEO) on endothelial cells isolated from the umbilical cord vein of females with gestational diabetes mellitus (GDM-HUVEC), which is a suitable in vitro model to reproduce the pro-inflammatory phenotype of a diabetic endothelium. For this purpose, the Gas Chromatographic/Mass Spectrometric (GC-MS) chemical profiles of AEO and LEO were first analyzed. Thus, GDM-HUVEC and related controls (C-HUVEC) were pre-treated for 24 h with AEO and LEO at 0.025% v/v, a concentration chosen among others (cell viability by MTT assay), and then stimulated with TNF-α (1 ng/mL). From the GC-MS analysis, trans-anethole (88.5%) and 1,8-cineole (53.9%) resulted as the major components of AEO and LEO, respectively. The results in C- and GDM-HUVEC showed that the treatment with both EOs significantly reduced: (i) the adhesion of the U937 monocyte to HUVEC; (ii) vascular adhesion molecule-1 (VCAM-1) protein and gene expression; (iii) Nuclear Factor-kappa B (NF-κB) p65 nuclear translocation. Taken together, these data suggest the anti-inflammatory efficacy of AEO and LEO in our in vitro model and lay the groundwork for further preclinical and clinical studies to study their potential use as supplements to mitigate vascular endothelial dysfunction associated with DM.
format Online
Article
Text
id pubmed-10138528
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101385282023-04-28 Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus Schiavone, Valeria Romasco, Tea Di Pietrantonio, Nadia Garzoli, Stefania Palmerini, Carola Di Tomo, Pamela Pipino, Caterina Mandatori, Domitilla Fioravanti, Rossella Butturini, Elena Sabatino, Manuela Baldassarre, Maria Pompea Antonia Ragno, Rino Pandolfi, Assunta Di Pietro, Natalia Int J Mol Sci Article Essential oils (EOs) are mixtures of volatile compounds belonging to several chemical classes derived from aromatic plants using different distillation techniques. Recent studies suggest that the consumption of Mediterranean plants, such as anise and laurel, contributes to improving the lipid and glycemic profile of patients with diabetes mellitus (DM). Hence, the aim of the present study was to investigate the potential anti-inflammatory effect of anise and laurel EOs (AEO and LEO) on endothelial cells isolated from the umbilical cord vein of females with gestational diabetes mellitus (GDM-HUVEC), which is a suitable in vitro model to reproduce the pro-inflammatory phenotype of a diabetic endothelium. For this purpose, the Gas Chromatographic/Mass Spectrometric (GC-MS) chemical profiles of AEO and LEO were first analyzed. Thus, GDM-HUVEC and related controls (C-HUVEC) were pre-treated for 24 h with AEO and LEO at 0.025% v/v, a concentration chosen among others (cell viability by MTT assay), and then stimulated with TNF-α (1 ng/mL). From the GC-MS analysis, trans-anethole (88.5%) and 1,8-cineole (53.9%) resulted as the major components of AEO and LEO, respectively. The results in C- and GDM-HUVEC showed that the treatment with both EOs significantly reduced: (i) the adhesion of the U937 monocyte to HUVEC; (ii) vascular adhesion molecule-1 (VCAM-1) protein and gene expression; (iii) Nuclear Factor-kappa B (NF-κB) p65 nuclear translocation. Taken together, these data suggest the anti-inflammatory efficacy of AEO and LEO in our in vitro model and lay the groundwork for further preclinical and clinical studies to study their potential use as supplements to mitigate vascular endothelial dysfunction associated with DM. MDPI 2023-04-13 /pmc/articles/PMC10138528/ /pubmed/37108387 http://dx.doi.org/10.3390/ijms24087225 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Schiavone, Valeria
Romasco, Tea
Di Pietrantonio, Nadia
Garzoli, Stefania
Palmerini, Carola
Di Tomo, Pamela
Pipino, Caterina
Mandatori, Domitilla
Fioravanti, Rossella
Butturini, Elena
Sabatino, Manuela
Baldassarre, Maria Pompea Antonia
Ragno, Rino
Pandolfi, Assunta
Di Pietro, Natalia
Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus
title Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus
title_full Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus
title_fullStr Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus
title_full_unstemmed Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus
title_short Essential Oils from Mediterranean Plants Inhibit In Vitro Monocyte Adhesion to Endothelial Cells from Umbilical Cords of Females with Gestational Diabetes Mellitus
title_sort essential oils from mediterranean plants inhibit in vitro monocyte adhesion to endothelial cells from umbilical cords of females with gestational diabetes mellitus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138528/
https://www.ncbi.nlm.nih.gov/pubmed/37108387
http://dx.doi.org/10.3390/ijms24087225
work_keys_str_mv AT schiavonevaleria essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT romascotea essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT dipietrantonionadia essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT garzolistefania essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT palmerinicarola essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT ditomopamela essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT pipinocaterina essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT mandatoridomitilla essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT fioravantirossella essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT butturinielena essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT sabatinomanuela essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT baldassarremariapompeaantonia essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT ragnorino essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT pandolfiassunta essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus
AT dipietronatalia essentialoilsfrommediterraneanplantsinhibitinvitromonocyteadhesiontoendothelialcellsfromumbilicalcordsoffemaleswithgestationaldiabetesmellitus