Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance

Abstract This study aims to identify pathway involvement in the development of cisplatin (cis-diamminedichloroplatinum (II); CDDP) resistance in A549 lung cancer (LC) cells by utilizing advanced bioinformatics software. We developed CDDP-resistant A549 (A549/DDP) cells through prolonged incubation w...

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Main Authors: A K M Nawshad Hossian, Fatema Tuz Zahra, Sagun Poudel, Camille F. Abshire, Paula Polk, Jone Garai, Jovanny Zabaleta, Constantinos M. Mikelis, George Mattheolabakis
Format: Article
Language:English
Published: Nature Publishing Group 2021-03-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-85930-y
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spelling doaj-a63862fee7a94aa29623e74a3b9c37092021-03-28T11:26:55ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111510.1038/s41598-021-85930-yAdvanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistanceA K M Nawshad Hossian0Fatema Tuz Zahra1Sagun Poudel2Camille F. Abshire3Paula Polk4Jone Garai5Jovanny Zabaleta6Constantinos M. Mikelis7George Mattheolabakis8School of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana MonroeDepartment of Pharmaceutical Sciences, School of Pharmacy, Texas Tech University Health Sciences CenterSchool of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana MonroeLouisiana State University Health Sciences CenterLouisiana State University Health Sciences CenterStanley S. Scott Cancer Center, Louisiana State University Health Sciences CenterDepartment of Pediatrics and Stanley S. Scott Cancer Center, Louisiana State University Health Sciences CenterDepartment of Pharmaceutical Sciences, School of Pharmacy, Texas Tech University Health Sciences CenterSchool of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana MonroeAbstract This study aims to identify pathway involvement in the development of cisplatin (cis-diamminedichloroplatinum (II); CDDP) resistance in A549 lung cancer (LC) cells by utilizing advanced bioinformatics software. We developed CDDP-resistant A549 (A549/DDP) cells through prolonged incubation with the drug and performed RNA-seq on RNA extracts to determine differential mRNA and miRNA expression between A549/DDP and A549 cells. We analyzed the gene dysregulation with Ingenuity Pathway Analysis (IPA; QIAGEN) software. In contrast to prior research, which relied on the clustering of dysregulated genes to pathways as an indication of pathway activity, we utilized the IPA software for the dynamic evaluation of pathway activity depending on the gene dysregulation levels. We predicted 15 pathways significantly contributing to the chemoresistance, with several of them to have not been previously reported or analyzed in detail. Among them, the PKR signaling, cholesterol biosynthesis, and TEC signaling pathways are included, as well as genes, such as PIK3R3, miR-34c-5p, and MDM2, among others. We also provide a preliminary analysis of SNPs and indels, present exclusively in A549/DDP cells. This study's results provide novel potential mechanisms and molecular targets that can be explored in future studies and assist in improving the understanding of the chemoresistance phenotype.https://doi.org/10.1038/s41598-021-85930-y
collection DOAJ
language English
format Article
sources DOAJ
author A K M Nawshad Hossian
Fatema Tuz Zahra
Sagun Poudel
Camille F. Abshire
Paula Polk
Jone Garai
Jovanny Zabaleta
Constantinos M. Mikelis
George Mattheolabakis
spellingShingle A K M Nawshad Hossian
Fatema Tuz Zahra
Sagun Poudel
Camille F. Abshire
Paula Polk
Jone Garai
Jovanny Zabaleta
Constantinos M. Mikelis
George Mattheolabakis
Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance
Scientific Reports
author_facet A K M Nawshad Hossian
Fatema Tuz Zahra
Sagun Poudel
Camille F. Abshire
Paula Polk
Jone Garai
Jovanny Zabaleta
Constantinos M. Mikelis
George Mattheolabakis
author_sort A K M Nawshad Hossian
title Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance
title_short Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance
title_full Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance
title_fullStr Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance
title_full_unstemmed Advanced bioinformatic analysis and pathway prediction of NSCLC cells upon cisplatin resistance
title_sort advanced bioinformatic analysis and pathway prediction of nsclc cells upon cisplatin resistance
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-03-01
description Abstract This study aims to identify pathway involvement in the development of cisplatin (cis-diamminedichloroplatinum (II); CDDP) resistance in A549 lung cancer (LC) cells by utilizing advanced bioinformatics software. We developed CDDP-resistant A549 (A549/DDP) cells through prolonged incubation with the drug and performed RNA-seq on RNA extracts to determine differential mRNA and miRNA expression between A549/DDP and A549 cells. We analyzed the gene dysregulation with Ingenuity Pathway Analysis (IPA; QIAGEN) software. In contrast to prior research, which relied on the clustering of dysregulated genes to pathways as an indication of pathway activity, we utilized the IPA software for the dynamic evaluation of pathway activity depending on the gene dysregulation levels. We predicted 15 pathways significantly contributing to the chemoresistance, with several of them to have not been previously reported or analyzed in detail. Among them, the PKR signaling, cholesterol biosynthesis, and TEC signaling pathways are included, as well as genes, such as PIK3R3, miR-34c-5p, and MDM2, among others. We also provide a preliminary analysis of SNPs and indels, present exclusively in A549/DDP cells. This study's results provide novel potential mechanisms and molecular targets that can be explored in future studies and assist in improving the understanding of the chemoresistance phenotype.
url https://doi.org/10.1038/s41598-021-85930-y
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