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Your search keyword '"CDKN1B"' showing total 19 results

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19 results on '"CDKN1B"'

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1. Retinoic acid inhibition of cell proliferation via activation of CDKN1B signaling in the forebrain and spinal cord during mouse embryonic development.

2. Multiple endocrine neoplasia type 4 (MEN4): a thorough update on the latest and least known men syndrome.

3. SUZ12 inhibition attenuates cell proliferation of glioblastoma via post-translational regulation of CDKN1B.

4. A pan-cancer analysis for the oncogenic role of cyclin-dependent kinase inhibitor 1B in human cancers.

5. Knockdown of circ_0006872 alleviates CSE-induced human bronchial epithelial cells injury in chronic obstructive pulmonary disease.

6. PUMILIO-mediated translational control of somatic cell cycle program promotes folliculogenesis and contributes to ovarian cancer progression.

7. CDKN1B Mediates Apoptosis of Neuronal Cells and Inflammation Induced by Oxyhemoglobin via miR-502-5p After Subarachnoid Hemorrhage.

8. Loss of p27 expression is associated with MEN1 gene mutations in sporadic parathyroid adenomas.

9. Genetic and molecular analyses reveal G6PC as a key element connecting glucose metabolism and cell cycle control in ovarian cancer.

11. MicroRNA-452 promotes tumorigenesis in hepatocellular carcinoma by targeting cyclin-dependent kinase inhibitor 1B.

12. Environmental Exposure and Tumor Heterogeneity in Colorectal Cancer Risk and Outcomes.

13. Association of CDKN1B gene polymorphisms with susceptibility to breast cancer: a meta-analysis.

14. Role of DNA repair and cell cycle control genes in ovarian cancer susceptibility.

15. The Alteration of MiR-222 and Its Target Genes in Nickel-Induced Tumor.

16. The V109G Polymorphism of the p27 Gene CDKN1B Indicates a Worse Outcome in Node-Negative Breast Cancer Patients.

17. Targeting of BMI-1 with PTC-209 shows potent anti-myeloma activity and impairs the tumour microenvironment

18. Integrative pathway dissection of molecular mechanisms of moxLDL-induced vascular smooth muscle phenotype transformation

19. Characterization of a naturally-occurring p27 mutation predisposing to multiple endocrine tumors

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