134 results on '"Liu, Tieju"'
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2. LncRNA n339260 functions in hepatocellular carcinoma progression via regulation of miRNA30e-5p/TP53INP1 expression
3. PTGER3 knockdown inhibits the vulnerability of triple‐negative breast cancer to ferroptosis
4. UTP23 Functions in Breast Cancer Progression and Predicts Poor Prognosis of Luminal a Breast Cancer
5. Effect of EphA2 knockdown on melanoma metastasis depends on intrinsic ephrinA1 level
6. UTP23 Functions in Breast Cancer Progression and Predicts Poor Prognosis of Luminal a Breast Cancer
7. RSRC2 Expression Inhibits Malignant Progression of Triple-Negative Breast Cancer by Transcriptionally Regulating SCIN Expression.
8. Table S3: Primers for qRT-PCR from TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
9. Data from TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
10. Data from USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
11. Supplementary Figure 2 from USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
12. Supplementary Figure 3 from USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
13. Supplementary Figure 1 from USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
14. Supplementary Figure S2 from TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
15. Supplementary Figure legends Tables and RSRC2 minigene sequence from TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
16. Table S5 S6: TRA2A expression was significantly associated with poorer survival from TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
17. Supplementary Figure legends from USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
18. Table S2: TRA2A-regulated AS events from TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
19. Supplementary Table 1 from USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
20. Supplementary Figures 1-3 from Coordination of Centrosome Homeostasis and DNA Repair Is Intact in MCF-7 and Disrupted in MDA-MB 231 Breast Cancer Cells
21. Data from Coordination of Centrosome Homeostasis and DNA Repair Is Intact in MCF-7 and Disrupted in MDA-MB 231 Breast Cancer Cells
22. LOXL2 serves as a prognostic biomarker for hepatocellular carcinoma by mediating immune infiltration and vasculogenic mimicry
23. MMP‐2 and MMP‐13 affect vasculogenic mimicry formation in large cell lung cancer
24. LOXL2 serves as a prognostic biomarker for hepatocellular carcinoma by mediating immune infiltration and vasculogenic mimicry.
25. sj-docx-5-onc-10.1177_11795549221109511 – Supplemental material for GRHL2 Expression Functions in Breast Cancer Aggressiveness and Could Serve as Prognostic and Diagnostic Biomarker for Breast Cancer
26. TAZ promotes vasculogenic mimicry in gastric cancer through the upregulation of TEAD4
27. GRHL2 Expression Functions in Breast Cancer Aggressiveness and Could Serve as Prognostic and Diagnostic Biomarker for Breast Cancer
28. GRHL2 is a Candidate Prognostic and Immunotherapy Biomarker in Breast Cancer
29. The significance of minimally invasive core needle biopsy and immunohistochemistry analysis in 235 cases with breast lesions
30. The prognostic significance of a combined determination of cathepsin D and estrogen receptors in breast carcinomas with positive axillary lymph nodes
31. Slug promoted vasculogenic mimicry in hepatocellular carcinoma
32. HER2/neu expression correlates with vasculogenic mimicry in invasive breast carcinoma
33. Abnormal expression of Nek2 and β-catenin in breast carcinoma: clinicopathological correlations
34. The EMT transcription factor, Twist1, as a novel therapeutic target for pulmonary sarcomatoid carcinomas
35. Increased expression of centrosomal α, γ-tubulin in atypical ductal hyperplasia and carcinoma of the breast
36. LOXL2 promotes vasculogenic mimicry and tumour aggressiveness in hepatocellular carcinoma
37. Long noncoding RNA n339260 promotes vasculogenic mimicry and cancer stem cell development in hepatocellular carcinoma
38. The suppression of DUSP5 expression correlates with paclitaxel resistance and poor prognosis in basal-like breast cancer
39. TRA2A Promoted Paclitaxel Resistance and Tumor Progression in Triple-Negative Breast Cancers via Regulating Alternative Splicing
40. HnRNPM and CD44s expression affects tumor aggressiveness and predicts poor prognosis in breast cancer with axillary lymph node metastases
41. HIF-1α promoted vasculogenic mimicry formation in hepatocellular carcinoma through LOXL2 up-regulation in hypoxic tumor microenvironment
42. LOXL2 promotes vasculogenic mimicry and tumour aggressiveness in hepatocellular carcinoma.
43. Function of AURKA protein kinase in the formation of vasculogenic mimicry in triple-negative breast cancer stem cells
44. Nodal signaling promotes vasculogenic mimicry formation in breast cancer via the Smad2/3 pathway
45. Function of AURKA protein kinase in the formation of vasculogenic mimicry in triple-negative breast cancer stem cells
46. Linearly Patterned Programmed Cell Necrosis Induced by Chronic Hypoxia Plays a Role in Melanoma Angiogenesis
47. USP44+ Cancer Stem Cell Subclones Contribute to Breast Cancer Aggressiveness by Promoting Vasculogenic Mimicry
48. Hypoxia promotes vasculogenic mimicry formation by the Twist1-Bmi1 connection in hepatocellular carcinoma
49. OCT4 Expression and Vasculogenic Mimicry Formation Positively Correlate with Poor Prognosis in Human Breast Cancer
50. Slug promotes hepatocellular cancer cell progression by increasing sox2 and nanog expression
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