406 results on '"Peng, DunFa"'
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2. Fibroblast growth factor receptor-4 mediates activation of Nuclear Factor Erythroid 2-Related Factor-2 in gastric tumorigenesis
3. Correction: Activation of IGF1R by DARPP-32 promotes STAT3 signaling in gastric cancer cells
4. Smoking induces WEE1 expression to promote docetaxel resistance in esophageal adenocarcinoma
5. CDK1 bridges NF-κB and β-catenin signaling in response to H. pylori infection in gastric tumorigenesis
6. Induction of Fibroblast Growth Factor Receptor 4 by Helicobacter pylori via Signal Transducer and Activator of Transcription 3 With a Feedforward Activation Loop Involving SRC Signaling in Gastric Cancer
7. Helicobacter pylori–induced RASAL2 Through Activation of Nuclear Factor-κB Promotes Gastric Tumorigenesis via β-catenin Signaling Axis
8. APE1 redox function is required for activation of Yes-associated protein 1 under reflux conditions in Barrett’s-associated esophageal adenocarcinomas
9. Data from Targeting SMAD3 Improves Response to Oxaliplatin in Esophageal Adenocarcinoma Models by Impeding DNA Repair
10. Targeting SMAD3 Improves Response to Oxaliplatin in Esophageal Adenocarcinoma Models by Impeding DNA Repair
11. Activation of NRF2 by APE1/REF1 is redox-dependent in Barrett's related esophageal adenocarcinoma cells
12. The antioxidant response in Barrett's tumorigenesis: A double-edged sword
13. Silencing of miR490–3p by H. pylori activates DARPP-32 and induces resistance to gefitinib
14. PRDX2 protects against oxidative stress induced by H. pylori and promotes resistance to cisplatin in gastric cancer
15. NRF2 antioxidant response protects against acidic bile salts-induced oxidative stress and DNA damage in esophageal cells
16. Correction: Activation of IGF1R by DARPP-32 promotes STAT3 signaling in gastric cancer cells
17. Fibroblast growth factor receptor-4 mediates activation of Nuclear Factor Erythroid 2-Related Factor-2 in gastric tumorigenesis
18. Activation of IGF1R by DARPP-32 promotes STAT3 signaling in gastric cancer cells
19. Differential Expression of NEK Kinase Family Members in Esophageal Adenocarcinoma and Barrett’s Esophagus
20. Abstract 3237: Dovitinib restricts EMT and promotes T cell recruitment to immune-desert gastric cancers via tumor-intrinsic IFN-γ signaling
21. Abstract 3964: APE1 protects SMAD3 against ROC1 ubiquitin mediated degradation in esophageal adenocarcinoma cells
22. Abstract 4776: NRF2 is overexpressed in esophageal adenocarcinoma and its targeting sensitizes tumor cells to cisplatin through induction of ferroptosis and apoptosis
23. Abstract 2592: Helicobacter pylori-induced FGFR4 mediates nuclear accumulation of NRF2 in gastric tumorigenesis
24. Abstract 1232: Gastroesophageal reflux disease promotes E-cadherin cleavage and activates EMT via APE1-redox function in esophageal adenocarcinoma
25. Abstract 5972: CDK1 bridges NF-kB and b-catenin signaling in response to H. pylori infection in gastric tumorigenesis
26. Abstract 375: Smoking induces Wee1 expression through miRNA deregulation, promoting docetaxel resistance in esophageal adenocarcinoma
27. Data from Methylation of the HOXA10 Promoter Directs miR-196b-5p–Dependent Cell Proliferation and Invasion of Gastric Cancer Cells
28. Supplementary Table 1 from The Aurora Kinase A Inhibitor MLN8237 Enhances Cisplatin-Induced Cell Death in Esophageal Adenocarcinoma Cells
29. Supplementary Figure Legends 1-3, Table Legend 1 from The Aurora Kinase A Inhibitor MLN8237 Enhances Cisplatin-Induced Cell Death in Esophageal Adenocarcinoma Cells
30. Supplementary Figure 2 from The Aurora Kinase A Inhibitor MLN8237 Enhances Cisplatin-Induced Cell Death in Esophageal Adenocarcinoma Cells
31. Supplementary Figure 1 from Methylation of the HOXA10 Promoter Directs miR-196b-5p–Dependent Cell Proliferation and Invasion of Gastric Cancer Cells
32. Reflux conditions induce E-cadherin cleavage and EMT via APE1 redox function in oesophageal adenocarcinoma
33. Activation of EGFR-DNA-PKcs pathway by IGFBP2 protects esophageal adenocarcinoma cells from acidic bile salts-induced DNA damage
34. Epigenetic regulation of AURKA by miR-4715-3p in upper gastrointestinal cancers
35. Activation of STAT3 signaling is mediated by TFF1 silencing in gastric neoplasia
36. Supp Figure S11 from A Combination of SAHA and Quinacrine Is Effective in Inducing Cancer Cell Death in Upper Gastrointestinal Cancers
37. Supplementary Figure 1 from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
38. Supp Table 1 from A Combination of SAHA and Quinacrine Is Effective in Inducing Cancer Cell Death in Upper Gastrointestinal Cancers
39. Supplementary Figure 6 from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
40. Supplementary Figure 5 from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
41. Supplementary Materials and Methods from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
42. Supplementary Figure 4 from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
43. Data from APE1 Upregulates MMP-14 via Redox-Sensitive ARF6-Mediated Recycling to Promote Cell Invasion of Esophageal Adenocarcinoma
44. Supplementary Figure 3 from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
45. Supplementary Figure 2 from HDM2 Regulation by AURKA Promotes Cell Survival in Gastric Cancer
46. Data from ABL Regulation by AXL Promotes Cisplatin Resistance in Esophageal Cancer
47. Supplementary Methods , Figure Legend from ABL Regulation by AXL Promotes Cisplatin Resistance in Esophageal Cancer
48. Supplementary Figure 1 from ABL Regulation by AXL Promotes Cisplatin Resistance in Esophageal Cancer
49. Targeting NRF2 Sensitizes Esophageal Adenocarcinoma Cells to Cisplatin through Induction of Ferroptosis and Apoptosis
50. Induction of Fibroblast Growth Factor Receptor 4 by Helicobacter pylori via Signal Transducer and Activator of Transcription 3 With a Feedforward Activation Loop Involving Steroid Receptor Coactivator Signaling in Gastric Cancer
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