Literature DB >> 33360155

Olive leaf extract impairs mitochondria by pro-oxidant activity in MDA-MB-231 and OVCAR-3 cancer cells.

Reyes Benot-Dominguez1, Maria Grazia Tupone2, Vanessa Castelli3, Michele d'Angelo4, Elisabetta Benedetti5, Massimiliano Quintiliani6, Benedetta Cinque7, Iris Maria Forte8, Maria Grazia Cifone9, Rodolfo Ippoliti10, Barbara Barboni11, Antonio Giordano12, Annamaria Cimini13.   

Abstract

Breast and ovarian cancers are the leading and fifth reason for tumor death among females, respectively. Recently, many studies demonstrated antiproliferative activities of natural aliments in cancer. In this study, we investigated the antitumor potential of Olive Leaf Extract (OLE) in triple-negative breast and ovarian cancer cells. A HPLC/DAD analysis on OLE has been performed to assess the total polyphenolics and other secondary metabolites content. HCEpiC, MDA-MB-231, and OVCAR-3 cell lines were used. MTS, Cytofluorimetric, Western Blot analysis were performed to analyze cell viability, cell proliferation, apoptosis, and oxidative stress. Fluorimetric and IncuCyte® analyses were carried out to evaluate apoptosis and mitochondrial function. We confirmed that OLE, containing a quantity of oleuropein of 87 % of the total extract, shows anti-proliferative and pro-apoptotic activity on MDA-MB-231 cells. For the first time, our results indicate that OLE inhibits OVCAR-3 cell viability inducing cell cycle arrest, and it also increases apoptotic cell death up-regulating the protein level of cleaved-PARP and caspase 9. Moreover, our data show that OLE treatment causes a significant decrease in mitochondrial functionality, paralleled by a reduction of mitochondrial membrane potential. Interestingly, OLE increased the level of intracellular and mitochondrial reactive oxygen species (ROS) together with a decreased activity of ROS scavenging enzymes, confirming oxidative stress in both models. Our data demonstrate that mitochondrial ROS generation represented the primary mechanism of OLE antitumor activity, as pretreatment with antioxidant N-acetylcysteine prevented OLE-induced cell cycle arrest and apoptosis.
Copyright © 2020 The Authors. Published by Elsevier Masson SAS.. All rights reserved.

Entities:  

Keywords:  Mediterranean diet; Mitochondria; OLE; Ovarian cancer; ROS; TNBC

Year:  2020        PMID: 33360155     DOI: 10.1016/j.biopha.2020.111139

Source DB:  PubMed          Journal:  Biomed Pharmacother        ISSN: 0753-3322            Impact factor:   6.529


  12 in total

1.  Oleuropein Counteracts Both the Proliferation and Migration of Intra- and Extragonadal Seminoma Cells.

Authors:  Sabrina Bossio; Anna Perri; Rocco Malivindi; Francesca Giordano; Vittoria Rago; Maria Mirabelli; Alessandro Salatino; Antonio Brunetti; Emanuela Alessandra Greco; Antonio Aversa
Journal:  Nutrients       Date:  2022-05-31       Impact factor: 6.706

Review 2.  The Great Escape: The Power of Cancer Stem Cells to Evade Programmed Cell Death.

Authors:  Vanessa Castelli; Antonio Giordano; Elisabetta Benedetti; Francesco Giansanti; Massimiliano Quintiliani; Annamaria Cimini; Michele d'Angelo
Journal:  Cancers (Basel)       Date:  2021-01-17       Impact factor: 6.639

3.  Nanoencapsulation of hydroxytyrosol in chitosan crosslinked with sodium bisulfate tandem ultrasonication: Techno-characterization, release and antiproliferative properties.

Authors:  Touseef Ahmed Wani; F A Masoodi; Rehana Akhter; Towseef Akram; Adil Gani; Nadeem Shabir
Journal:  Ultrason Sonochem       Date:  2021-12-28       Impact factor: 7.491

Review 4.  Insights into the Role of Oxidative Stress in Ovarian Cancer.

Authors:  Dan-Ni Ding; Liang-Zhen Xie; Ying Shen; Jia Li; Ying Guo; Yang Fu; Fang-Yuan Liu; Feng-Juan Han
Journal:  Oxid Med Cell Longev       Date:  2021-10-07       Impact factor: 6.543

Review 5.  Biological effects of olive oil phenolic compounds on mitochondria.

Authors:  Mercedes Blanco-Benítez; Ana Calderón-Fernández; Saray Canales-Cortés; Eva Alegre-Cortés; Elisabet Uribe-Carretero; Marta Paredes-Barquero; Alberto Gimenez-Bejarano; Gema Duque González; Patricia Gómez-Suaga; Juan Ortega-Vidal; Sofía Salido; Joaquín Altarejos; Guadalupe Martínez-Chacón; Mireia Niso-Santano; José M Fuentes; Rosa A González-Polo; Sokhna M S Yakhine-Diop
Journal:  Mol Cell Oncol       Date:  2022-03-20

Review 6.  Mitochondrial Dysfunction Pathway Alterations Offer Potential Biomarkers and Therapeutic Targets for Ovarian Cancer.

Authors:  Liang Shen; Xianquan Zhan
Journal:  Oxid Med Cell Longev       Date:  2022-04-20       Impact factor: 7.310

7.  Herbal Additives Substantially Modify Antioxidant Properties and Tocopherol Content of Cold-Pressed Oils.

Authors:  Kamila Laskoś; Elżbieta Pisulewska; Piotr Waligórski; Franciszek Janowiak; Anna Janeczko; Iwona Sadura; Szymon Polaszczyk; Ilona Mieczysława Czyczyło-Mysza
Journal:  Antioxidants (Basel)       Date:  2021-05-14

Review 8.  Protective Effects and Benefits of Olive Oil and Its Extracts on Women's Health.

Authors:  Thanh Truong Giang Ly; Jisoo Yun; Dong-Hyung Lee; Joo-Seop Chung; Sang-Mo Kwon
Journal:  Nutrients       Date:  2021-11-27       Impact factor: 5.717

Review 9.  Influence of Olive Oil and Its Components on Breast Cancer: Molecular Mechanisms.

Authors:  Raquel Moral; Eduard Escrich
Journal:  Molecules       Date:  2022-01-12       Impact factor: 4.411

10.  An In Vitro and In Silico Study of the Enhanced Antiproliferative and Pro-Oxidant Potential of Olea europaea L. cv. Arbosana Leaf Extract via Elastic Nanovesicles (Spanlastics).

Authors:  Taghreed S Alnusaire; Ahmed M Sayed; Abeer H Elmaidomy; Mohammad M Al-Sanea; Sarah Albogami; Mha Albqmi; Bassam F Alowaiesh; Ehab M Mostafa; Arafa Musa; Khayrya A Youssif; Hesham Refaat; Eman M Othman; Thomas Dandekar; Eman Alaaeldin; Mohammed M Ghoneim; Usama Ramadan Abdelmohsen
Journal:  Antioxidants (Basel)       Date:  2021-11-23
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