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This study was designed to explore the molecular mechanism of bladder cancer through an RNA-seq
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创建时间:
2019-03-29
相关数据集
Table_1_PUF60/AURKA Axis Contributes to Tumor Progression and Malignant Phenotypes in Bladder Cancer.XLSX
Abnormal expression or mutation of RNA splicing proteins are widely observed in human cancers. Here, we identified poly(U) binding splicing factor 60 (PUF60) as one of the most differentially expresse
NIAID Data Ecosystem60
Table5_4-Methoxydalbergione Inhibits Bladder Cancer Cell Growth via Inducing Autophagy and Inhibiting Akt/ERK Signaling Pathway.XLSX
Bladder cancer (BC) ranks the fourth in incidence in cancers of men and is a common malignant tumor in women. 4-Methoxydalbergione (4MOD), which is purified from Dalbergia sissoo Roxb, has been shown
NIAID Data Ecosystem30
Supplementary File 7 from TERC Stimulates Fatty Acid Metabolism to Promote Bladder Cancer Progression
Supplementary file 7 shows the peptide information of nuclear pore complex-associated proteins that interact with TERC in HEK293T cells identified by mass spectrometry.
Figshare2025-10-01 更新20
Next-generation RNA sequencing of murine bladder cancer cells isolated from P53/PTEN KO tumors at different stages of the disease.. Next-generation RNA sequencing of murine bladder cancer cells isolated from P53/PTEN KO tumors at different stages of the disease.
Cancer cells from P53/PTEN KO bladder tumors collected at 5, 9, and 13 weeks after adenoviral vector injection. Overall design: Induction of tumor in P53 Fl/Fl PTEN Fl/Fl mice with an adenoviral vecto
NIAID Data Ecosystem40
Integration analysis of three omics data using penalized regression methods: An application to bladder cancer (expression). Homo sapiens
Omics data integration is becoming necessary to investigate the still unknown genomic mechanisms of complex diseases. During the integration process, many challenges arise such as data heterogeneity,
NIAID Data Ecosystem30



