36 results on '"Wen, Chuangyu"'
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2. METTL3 promotes colorectal cancer metastasis by promoting the maturation of pri-microRNA-196b
3. Epitranscriptional regulation of TGF-[beta] pseudoreceptor BAMBI by [m.sup.6]A/YTHDF2 drives extrinsic radioresistance
4. Altered B cell immunoglobulin signature exhibits potential diagnostic values in human colorectal cancer
5. Pyrimethamine inhibits cell growth by inducing cell senescence and boosting CD8+ T-cell mediated cytotoxicity in colorectal cancer
6. Oxfendazole Induces Apoptosis in Ovarian Cancer Cells by Activating JNK/MAPK Pathway and Inducing Reactive Oxygen Species Generation
7. Circular RNA GLIS2 promotes colorectal cancer cell motility via activation of the NF-κB pathway
8. Pseudolaric acid B induces mitotic arrest and apoptosis in both 5-fluorouracil-sensitive and -resistant colorectal cancer cells
9. Faecalibacterium prausnitzii Improves Lipid Metabolism Disorder and Insulin Resistance in Type 2 Diabetic Mice
10. The Loss of YTHDC1 in Gut Macrophages Exacerbates Inflammatory Bowel Disease
11. ROS-mediated inactivation of the PI3K/AKT pathway is involved in the antigastric cancer effects of thioredoxin reductase-1 inhibitor chaetocin
12. METTL3 promotes colorectal cancer metastasis by promoting the maturation of pri-microRNA-196b
13. Evacetrapib Elicits Antitumor Effects on Colorectal Cancer by Inhibiting the Wnt/β-Catenin Signaling Pathway and Activating the JNK Signaling Pathway
14. PEAK1, acting as a tumor promoter in colorectal cancer, is regulated by the EGFR/KRas signaling axis and miR-181d
15. Cyclin-dependent kinase 7/9 inhibitor SNS-032 induces apoptosis in diffuse large B-cell lymphoma cells
16. c-Myc-activated intronic miR-210 and lncRNA MIR210HG synergistically promote the metastasis of gastric cancer
17. ROS/JNK/C-Jun Pathway is Involved in Chaetocin Induced Colorectal Cancer Cells Apoptosis and Macrophage Phagocytosis Enhancement
18. JNK signaling pathway is involved in piperlongumine-mediated apoptosis in human colorectal cancer HCT116 cells
19. Pyrimethamine inhibits cell growth by inducing cell senescence and boosting CD8+ T-cell mediated cytotoxicity in colorectal cancer.
20. KCNH3 Predicts Poor Prognosis and Promotes Progression in Ovarian Cancer
21. In Utero Exposure to Fine Particles Decreases Early Birth Weight of Rat Offspring and TLR4/NF-κB Expression in Lungs
22. Corrigendum to “Toosendanin induces caspase-dependent apoptosis through the p38 MAPK pathway in human gastric cancer cells” [Biochem. Biophys. Res. Commun. 505(1) (2018) 261-266]
23. Toosendanin-induced apoptosis in colorectal cancer cells is associated with the κ-opioid receptor/β-catenin signaling axis
24. Pseudolaric acid B induces mitotic arrest and apoptosis in both imatinib-sensitive and -resistant chronic myeloid leukaemia cells
25. Claudin 10 acts as a novel biomarker for the prognosis of patients with ovarian cancer
26. Polymorphisms of the TNF Gene and Three Susceptibility Loci Are Associated with Crohn’s Disease and Perianal Fistula Crohn’s Disease: A Study among the Han Population from South China
27. MiR-27b-3p promotes migration and invasion in colorectal cancer cells by targeting HOXA10
28. Toosendanin induces caspase-dependent apoptosis through the p38 MAPK pathway in human gastric cancer cells
29. A novel long noncoding RNA OECC promotes colorectal cancer development and is negatively regulated by miR-143-3p
30. Reduced-gliotoxin induces ROS-mediated anoikis in human colorectal cancer cells
31. Establishment and evaluation of four different types of patient-derived xenograft models
32. Thymidine phosphorylase expression and prognosis in colorectal cancer treated with 5‑fluorouracil‑based chemotherapy: A meta‑analysis
33. TACC3 promotes colorectal cancer tumourigenesis and correlates with poor prognosis
34. Gambogic acid inhibits growth, induces apoptosis, and overcomes drug resistance in human colorectal cancer cells
35. Hsa-miR-19a is associated with lymph metastasis and mediates the TNF-α induced epithelial-to-mesenchymal transition in colorectal cancer
36. YTHDF1 loss in dendritic cells potentiates radiation-induced antitumor immunity via STING-dependent type I IFN production.
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