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Updated: Dec 22, 2025

Using RNA-sequencing to Detect Novel Splice Variants Related to Drug Resistance in In Vitro Cancer Models
Published on: December 9, 2016
A putative competing endogenous RNA network in cisplatin-resistant lung adenocarcinoma cells identifying potentially
Yepeng Li1, Shiqing Huang1, Zhongheng Wei1
1Department of Oncology, The Affiliated Hospital of Youjiang Medical University for Nationalities, Baise, Guangxi 533000, P.R. China.
Abstract:
Lung adenocarcinoma (LUAD) is the most common type of non-small cell lung cancer and has a poor 5 year survival rate (<10%). Cisplatin is one of the most effective chemotherapeutic treatments for LUAD, even though it is of limited overall utility due to acquired drug resistance. To identify possible genetic targets for the mitigation of cisplatin resistance, gene expression data from cisplatin-resistant cell lines were integrated with patient information. Expression data for cisplatin-resistant and cisplatin-sensitive A549 cell lines were obtained from the Gene Expression Omnibus database, while LUAD patient data was obtained from The Cancer Genome Atlas (TCGA) database. Differentially expressed mRNAs (DEmRNAs), microRNAs (DEmiRNAs) and long non-coding RNAs (DElncRNAs) were identified between the cisplatin-sensitive and cisplatin-resistant cells. Using the TCGA patient data, 33 DEmRNAs associated with survival were identified. A total of 74 DElncRNAs co-expressed with the survival-associated DEmRNAs, and 11 DEmiRNAs that regulated the survival-associated DEmRNAs, were also identified. A competing endogenous RNA (ceRNA) network was constructed based on the aforementioned results, which included 17 survival-associated DEmRNAs, 9 DEmiRNAs and 16 DElncRNAs. This network revealed 8 ceRNA pathway axes possibly associated with cisplatin resistance in A549 cells. Specifically, the network suggested that the lncRNAs HOXD-AS2, LINC01123 and FIRRE may act as ceRNAs to increase cisplatin resistance in human LUAD cells. Therefore, it was speculated that these lncRNAs represent potentially rewarding research targets.
Insights
Researchers identified key long non-coding RNAs (lncRNAs) that may increase cisplatin resistance in lung adenocarcinoma (LUAD). These findings offer potential new targets for overcoming chemotherapy resistance in LUAD patients.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Lung adenocarcinoma (LUAD) is a prevalent non-small cell lung cancer with a low 5-year survival rate.
- Cisplatin is a key chemotherapy for LUAD, but acquired drug resistance limits its effectiveness.
Purpose of the Study:
- To identify genetic targets for mitigating cisplatin resistance in LUAD.
- To construct a competing endogenous RNA (ceRNA) network to understand resistance mechanisms.
Main Methods:
- Integrated gene expression data from cisplatin-resistant/sensitive A549 cell lines (GEO) and LUAD patient data (TCGA).
- Identified differentially expressed mRNAs, microRNAs, and long non-coding RNAs.
- Constructed a ceRNA network using survival-associated genes and regulatory RNAs.
Main Results:
- Identified 33 survival-associated DEmRNAs from TCGA data.
- Found 74 co-expressed DElncRNAs and 11 regulatory DEmiRNAs.
- Constructed a ceRNA network revealing 8 pathway axes linked to cisplatin resistance.
- Highlighted HOXD-AS2, LINC01123, and FIRRE as potential ceRNAs promoting cisplatin resistance.
Conclusions:
- The study identified specific lncRNAs (HOXD-AS2, LINC01123, FIRRE) as potential mediators of cisplatin resistance in LUAD.
- These lncRNAs represent promising therapeutic targets for enhancing chemotherapy efficacy in LUAD.
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