Cargando…

Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth

In this study, we propose lactucopicrin (LCTP), a natural sesquiterpene lactone from Lactucavirosa, as a molecule able to control the growth of glioblastoma continuous cell line U87Mg. The IC50 of U87Mg against LCTP revealed a strong cytotoxic effect. Daily administration of LCTP showed a dose and t...

Descripción completa

Detalles Bibliográficos
Autores principales: Rotondo, Rossella, Oliva, Maria Antonietta, Staffieri, Sabrina, Castaldo, Salvatore, Giangaspero, Felice, Arcella, Antonietta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764785/
https://www.ncbi.nlm.nih.gov/pubmed/33322048
http://dx.doi.org/10.3390/molecules25245843
_version_ 1783628339283492864
author Rotondo, Rossella
Oliva, Maria Antonietta
Staffieri, Sabrina
Castaldo, Salvatore
Giangaspero, Felice
Arcella, Antonietta
author_facet Rotondo, Rossella
Oliva, Maria Antonietta
Staffieri, Sabrina
Castaldo, Salvatore
Giangaspero, Felice
Arcella, Antonietta
author_sort Rotondo, Rossella
collection PubMed
description In this study, we propose lactucopicrin (LCTP), a natural sesquiterpene lactone from Lactucavirosa, as a molecule able to control the growth of glioblastoma continuous cell line U87Mg. The IC50 of U87Mg against LCTP revealed a strong cytotoxic effect. Daily administration of LCTP showed a dose and time-dependent reduction of GBM cell growth and viability, also confirmed by inhibition of clonogenic potential and mobility of U87Mg cells. LCTP activated autophagy in U87Mg cells and decreased the phosphorylation of proliferative signals pAKT and pERK. LCTP also induced the cell cycle arrest in G2/M phase, confirmed by decrease of CDK2 protein and increase of p53 and p21. LCTP stimulated apoptosis as evidenced by reduction of procaspase 6 and the increase of the cleaved/full-length PARP ratio. The pre-treatment of U87Mg cells with ROS scavenger N-acetylcysteine (NAC), which reversed its cytotoxic effect, showed the involvement of LCTP in oxidative stress. Finally, LCTP strongly enhanced the sensitivity of U87Mg cells to canonical therapy Temozolomide (TMZ) and synergized with this drug. Altogether, the growth inhibition of U87Mg GBM cells induced by LCTP is the result of several synergic mechanisms, which makes LCTP a promising adjuvant therapy for this complex pathology.
format Online
Article
Text
id pubmed-7764785
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-77647852020-12-27 Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth Rotondo, Rossella Oliva, Maria Antonietta Staffieri, Sabrina Castaldo, Salvatore Giangaspero, Felice Arcella, Antonietta Molecules Article In this study, we propose lactucopicrin (LCTP), a natural sesquiterpene lactone from Lactucavirosa, as a molecule able to control the growth of glioblastoma continuous cell line U87Mg. The IC50 of U87Mg against LCTP revealed a strong cytotoxic effect. Daily administration of LCTP showed a dose and time-dependent reduction of GBM cell growth and viability, also confirmed by inhibition of clonogenic potential and mobility of U87Mg cells. LCTP activated autophagy in U87Mg cells and decreased the phosphorylation of proliferative signals pAKT and pERK. LCTP also induced the cell cycle arrest in G2/M phase, confirmed by decrease of CDK2 protein and increase of p53 and p21. LCTP stimulated apoptosis as evidenced by reduction of procaspase 6 and the increase of the cleaved/full-length PARP ratio. The pre-treatment of U87Mg cells with ROS scavenger N-acetylcysteine (NAC), which reversed its cytotoxic effect, showed the involvement of LCTP in oxidative stress. Finally, LCTP strongly enhanced the sensitivity of U87Mg cells to canonical therapy Temozolomide (TMZ) and synergized with this drug. Altogether, the growth inhibition of U87Mg GBM cells induced by LCTP is the result of several synergic mechanisms, which makes LCTP a promising adjuvant therapy for this complex pathology. MDPI 2020-12-10 /pmc/articles/PMC7764785/ /pubmed/33322048 http://dx.doi.org/10.3390/molecules25245843 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rotondo, Rossella
Oliva, Maria Antonietta
Staffieri, Sabrina
Castaldo, Salvatore
Giangaspero, Felice
Arcella, Antonietta
Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth
title Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth
title_full Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth
title_fullStr Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth
title_full_unstemmed Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth
title_short Implication of Lactucopicrin in Autophagy, Cell Cycle Arrest and Oxidative Stress to Inhibit U87Mg Glioblastoma Cell Growth
title_sort implication of lactucopicrin in autophagy, cell cycle arrest and oxidative stress to inhibit u87mg glioblastoma cell growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764785/
https://www.ncbi.nlm.nih.gov/pubmed/33322048
http://dx.doi.org/10.3390/molecules25245843
work_keys_str_mv AT rotondorossella implicationoflactucopicrininautophagycellcyclearrestandoxidativestresstoinhibitu87mgglioblastomacellgrowth
AT olivamariaantonietta implicationoflactucopicrininautophagycellcyclearrestandoxidativestresstoinhibitu87mgglioblastomacellgrowth
AT staffierisabrina implicationoflactucopicrininautophagycellcyclearrestandoxidativestresstoinhibitu87mgglioblastomacellgrowth
AT castaldosalvatore implicationoflactucopicrininautophagycellcyclearrestandoxidativestresstoinhibitu87mgglioblastomacellgrowth
AT giangasperofelice implicationoflactucopicrininautophagycellcyclearrestandoxidativestresstoinhibitu87mgglioblastomacellgrowth
AT arcellaantonietta implicationoflactucopicrininautophagycellcyclearrestandoxidativestresstoinhibitu87mgglioblastomacellgrowth