The dual protease inhibitor lopinavir/ritonavir (LPV/r) exerts genotoxic stress on lung cells.
A549 Cells
Antiretroviral Therapy, Highly Active
/ adverse effects
Aurora Kinase B
/ genetics
Caspase 3
/ genetics
Cell Line
DNA Damage
/ drug effects
Drug Combinations
Fibroblasts
/ cytology
HIV Protease Inhibitors
/ administration & dosage
Humans
Lopinavir
/ administration & dosage
Lung
/ cytology
Mad2 Proteins
/ genetics
Mutagenicity Tests
Ritonavir
/ administration & dosage
DNA Damage Response (DDR) pathway
Differential gene expression
Genotoxicity
Highly Active Antiretroviral Treatment (HAART)
Ingenuity Pathway Analysis (IPA)
Lopinavir/ritonavir (LPV/r)
Lung cancer
Journal
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie
ISSN: 1950-6007
Titre abrégé: Biomed Pharmacother
Pays: France
ID NLM: 8213295
Informations de publication
Date de publication:
Dec 2020
Dec 2020
Historique:
received:
21
05
2020
revised:
06
08
2020
accepted:
28
09
2020
pubmed:
16
10
2020
medline:
20
2
2021
entrez:
15
10
2020
Statut:
ppublish
Résumé
The Sub-Saharan countries, particularly South Africa has the largest number of people living with HIV, accompanied by the largest antiretroviral treatment (ART) programme in the world. The Highly Active Antiretroviral Treatment (HAART) is the most effective regimen against HIV/AIDS and has improved the lifespan and quality of life of HIV positive patients. HAART has also led to a decrease in the incidence of AIDS defining cancers (ADCs) while there is an increased incidence of the non-AIDS Defining Cancers (NADCs), such as lung cancer in the HAART era. The association between lung tumourigenesis and the use of HAART components such as the dual protease inhibitor (PI) lopinavir/ritonavir (LPV/r) is poorly understood. Using cell and molecular biological approaches, this study aimed at elucidating the effects of LPV/r on the regulation of the cell cycle related genes in normal (MRC-5) and adenocarcinoma (A549) lung cells. Initially, the nuclear integrity of these cells in response to LPV/r was determined using DAPI staining. The effect of LPV/r on cell cycle genes was evaluated through the use of a RT2 PCR gene array of 84 genes related to the cell cycle signaling pathway. The PCR array data was validated by Real-Time Quantification PCR (RT-qPCR). Ingenuity Pathway Analysis (IPA) bio-informatics tool was employed to disclose the molecular mechanism/s observed at cellular and gene expression levels. Loss of nuclear integrity and the upregulation of the p53 DNA damage response (DDR) pathway was revealed by DAPI staining, differential gene expression and IPA core analysis. Furthermore, MAD2L2 and AURKB which also play a role in the DDR pathway were shown to be differentially expressed. The activation of the CASP3 gene in response to LPV/r in A549 cells was also observed. The findings of this study suggest genotoxic properties of LPV/r in healthy normal lung fibroblasts cells and anti-tumour properties in the A549 cells.
Identifiants
pubmed: 33059259
pii: S0753-3322(20)31022-2
doi: 10.1016/j.biopha.2020.110829
pii:
doi:
Substances chimiques
Drug Combinations
0
HIV Protease Inhibitors
0
MAD2L2 protein, human
0
Mad2 Proteins
0
lopinavir-ritonavir drug combination
0
Lopinavir
2494G1JF75
AURKB protein, human
EC 2.7.11.1
Aurora Kinase B
EC 2.7.11.1
CASP3 protein, human
EC 3.4.22.-
Caspase 3
EC 3.4.22.-
Ritonavir
O3J8G9O825
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
110829Informations de copyright
Copyright © 2020 The Authors. Published by Elsevier Masson SAS.. All rights reserved.