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Updated: Apr 27, 2026

Magnetic Resonance Imaging Assessment of Carcinogen-induced Murine Bladder Tumors
Published on: March 29, 2019
Multidimensional transcriptomic analysis and in vitro experiments dissect the landscape of
Minghui Sun1, Dichao Hu1, Tongjie Li1
1Department of Urology, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, No.100, Haining Road, Shanghai, 200080, China.
Abstract:
2',2',4',4'-Tetrabromodiphenyl ether (BDE-47), the most widespread congener of polybrominated diphenyl ethers, has attracted considerable attention due to its environmental persistence and extensive use. Although epidemiological data associate BDE-47 exposure with increased cancer risk, its role in bladder cancer (BC) remains insufficiently characterized. We found that BDE-47 at a physiologically relevant concentration (0.1 μM, comparable to human exposure levels) enhanced malignant phenotypes of BC cells in vitro. A total of 229 candidate genes were uncovered at both bulk and single-cell transcriptomic levels through weighted gene co-expression network analysis and its single-cell extension. Functional enrichment revealed prominent involvement in inflammatory regulation, extracellular matrix remodeling, and lipid metabolism pathways, further supported by transcriptome analysis of BDE-47-treated BC cells. Protein-protein interaction network construction combined with machine learning identified eight hub genes (ACSL4, IFIH1, JAK2, PSMB9, ACSL5, SOCS3, SREBF1, and JUN) as core targets of BDE-47-driven BC progression. Molecular docking suggested favorable predicted interactions between BDE-47 and these targets. A nomogram was constructed within the TCGA-BLCA cohort to visualize the prognostic model. Collectively, our findings provide a preliminary delineation of candidate targets and pathways potentially involved in BDE-47-associated bladder cancer progression, thereby offering a rationale for further mechanistic investigations.
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