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Updated: Aug 23, 2025

Magnetic Resonance Imaging Assessment of Carcinogen-induced Murine Bladder Tumors
Published on: March 29, 2019
The targets of aspirin in bladder cancer: bioinformatics analysis
Xiao Li1, Yanghao Tai2, Shuying Liu1
1Department of Thoracic Oncology, Lin Fen Central Hospital, 041000, Lin Fen, China.
Background:
The anti-carcinogenic properties of aspirin have been observed in some solid tumors. However, the molecular mechanism of therapeutic effects of aspirin on bladder cancer is still indistinct. We introduced a bioinformatics analysis approach, to explore the targets of aspirin in bladder cancer (BC).
Methods:
To find out the potential targets of aspirin in BC, we analyzed direct protein targets (DPTs) of aspirin in Drug Bank 5.0. The protein-protein interaction (PPI) network and signaling pathway of aspirin DPTs were then analyzed subsequently. A detailed analysis of the KEGG (Kyoto Encyclopedia of Genes and Genomes) pathway has shown that aspirin is linked to BC. We identified overexpressed genes in BC comparing with normal samples by Oncomine and genes that interlinked with aspirin target genes in BC by STRING.
Results:
Firstly, we explored 16 direct protein targets (DPT) of aspirin. We analyzed the protein-protein interaction (PPI) network and signaling pathways of aspirin DPT. We found that aspirin is closely associated with a variety of cancers, including BC. Then, we classified mutations in 3 aspirin DPTs (CCND1, MYC and TP53) in BC using the cBio Portal database. In addition, we extracted the top 50 overexpressed genes in bladder cancer by Oncomine and predicted the genes associated with the 3 aspirin DPTs (CCND1, MYC and TP53) in BC by STRING. Finally, 5 exact genes were identified as potential therapeutic targets of aspirin in bladder cancer.
Conclusion:
The analysis of relevant databases will improve our mechanistic understanding of the role of aspirin in bladder cancer. This will guide the direction of our next drug-disease interaction studies.
Insights
Aspirin shows anti-cancer effects, but its mechanism in bladder cancer (BC) is unclear. Bioinformatics analysis identified five key genes as potential therapeutic targets for aspirin in bladder cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Bioinformatics
Background:
- Aspirin exhibits anti-carcinogenic properties in various solid tumors.
- The precise molecular mechanisms of aspirin's therapeutic effects in bladder cancer (BC) remain largely undefined.
- This study employed a bioinformatics approach to investigate aspirin's molecular targets in BC.
Purpose of the Study:
- To identify potential direct protein targets (DPTs) of aspirin relevant to bladder cancer.
- To analyze the protein-protein interaction (PPI) network and signaling pathways associated with aspirin's DPTs in BC.
- To elucidate the link between aspirin and bladder cancer through pathway and gene expression analysis.
Main Methods:
- Utilized Drug Bank 5.0 to identify aspirin's DPTs.
- Constructed and analyzed PPI networks and KEGG pathways for aspirin DPTs.
- Integrated data from Oncomine and STRING databases to identify overexpressed genes and gene interactions in BC.
- Examined mutations in key DPTs (CCND1, MYC, TP53) using the cBio Portal.
Main Results:
- Identified 16 direct protein targets of aspirin.
- Confirmed aspirin's association with various cancers, including BC, through PPI and pathway analysis.
- Discovered mutations in CCND1, MYC, and TP53 in BC.
- Identified five specific genes as potential therapeutic targets for aspirin in bladder cancer.
Conclusions:
- Bioinformatics analysis enhances the understanding of aspirin's role in bladder cancer.
- The identified targets provide a foundation for future drug-disease interaction studies.
- This research offers insights into aspirin's potential as a therapeutic agent for bladder cancer.
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