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pancreatic cancer cells

Proteomic Investigation of Glyceraldehyde-Derived Intracellular AGEs and Their Potential Influence on Pancreatic Ductal Cells

[Cells] evaluated the toxic effect of glyceraldehyde-derived intracellular AGEs on normal and malignant pancreatic ductal cells by assessing the cell viability, toxicity, and oxidative stress, followed by proteomic analysis.

The Transcription Factor Slug Uncouples Pancreatic Cancer Progression from the Raf-Mek1/2-Erk1/2 Pathway

[Cancer Research] Scientists generated pancreatic cancer cells resistant to Mek1/2 inhibition, which were also resistant to KRAS and Erk1/2 inhibitors.

CDK14/β-Catenin/TCF4/miR-26b Positive Feedback Regulation Modulating Pancreatic Cancer Cell Phenotypes In Vitro and Tumor Growth in Mice Model In Vivo

[Journal of Gene Medicine] Researchers investigated whether miR‐26b regulated CDK14 expression to affect the phenotype of pancreatic cancer cells.

Kaempferol Induces ROS-Dependent Apoptosis in Pancreatic Cancer Cells via TGM2-Mediated Akt/mTOR Signaling

[BMC Cancer] Researchers investigated whether kaempferol effectively suppressed pancreatic cancer through upregulation of reactive oxygen species (ROS), and explored the underlying molecular mechanism.

NR5A2 Transcriptional Activation by BRD4 Promotes Pancreatic Cancer Progression by Upregulating GDF15

[Cell Death Discovery] Scientists demonstrated that NR5A2 acted as a negative prognostic biomarker in PDAC. NR5A2 silencing inhibited the proliferation and migration abilities of pancreatic cancer cells in vitro and in vivo.

MIB1 Upregulates IQGAP1 and Promotes Pancreatic Cancer Progression by Inducing ST7 Degradation

[Molecular Oncology] Scientists confirmed that mind bomb 1 (MIB1) expression was elevated in pancreatic cancer tissues and that high levels of MIB associate with unfavorable prognosis. Overexpression of MIB1 enhanced proliferation and invasion of pancreatic cancer cells both in vitro and in vivo.

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