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Your search keyword '"Zhuang, Y"' showing total 43 results

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43 results on '"Zhuang, Y"'

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1. CD39 hi identifies an exhausted tumor-reactive CD8 + T cell population associated with tumor progression in human gastric cancer.

2. Tumor-infiltrating mast cells stimulate ICOS + regulatory T cells through an IL-33 and IL-2 axis to promote gastric cancer progression.

3. Neoadjuvant chemotherapy is linked to an amended anti-tumorigenic microenvironment in gastric cancer.

4. SOX2-Induced Linc-ROR Upregulation Inhibits Gastric Carcinoma Cell Proliferation and Metastasis Via the miR-580-3p/ANXA10 Pathway.

5. [Specimen extraction through natural orifices with Cai tubes in gastrointestinal surgery: a single-institute series of 234 cases].

6. Distribution, phenotype, functional and clinical relevance of CD8 + CD103 + tissue-resident memory T cells in human gastric cancer.

7. FasL + PD-L2 + Identifies a Novel Immunosuppressive Neutrophil Population in Human Gastric Cancer That Promotes Disease Progression.

8. Activated neutrophils polarize protumorigenic interleukin-17A-producing T helper subsets through TNF-α-B7-H2-dependent pathway in human gastric cancer.

9. L-Plastin Promotes Gastric Cancer Growth and Metastasis in a Helicobacter pylori cagA -ERK-SP1-Dependent Manner.

10. Expression, regulation and clinical significance of B7-H3 on neutrophils in human gastric cancer.

11. Granulocyte-Macrophage Colony-Stimulating Factor-Activated Neutrophils Express B7-H4 That Correlates with Gastric Cancer Progression and Poor Patient Survival.

12. Upregulation of Tubulointerstitial nephritis antigen like 1 promotes gastric cancer growth and metastasis by regulating multiple matrix metallopeptidase expression.

13. PD-1 does not mark tumor-infiltrating CD8+ T cell dysfunction in human gastric cancer.

15. microRNA-95 knockdown inhibits epithelial-mesenchymal transition and cancer stem cell phenotype in gastric cancer cells through MAPK pathway by upregulating DUSP5.

16. LncRNA PTCSC3 Is a Biomarker for the Treatment and Prognosis of Gastric Cancer.

17. Increased intratumoral mast cells foster immune suppression and gastric cancer progression through TNF-α-PD-L1 pathway.

18. Degranulation of mast cells induced by gastric cancer-derived adrenomedullin prompts gastric cancer progression.

19. Identification of the potential molecular mechanism and driving mutations in the pathogenesis of familial intestinal gastric cancer by whole exome sequencing.

20. Altered NKp30, NKp46, NKG2D, and DNAM-1 Expression on Circulating NK Cells Is Associated with Tumor Progression in Human Gastric Cancer.

21. CD45 + CD33 low CD11b dim myeloid-derived suppressor cells suppress CD8 + T cell activity via the IL-6/IL-8-arginase I axis in human gastric cancer.

22. Interleukin 6 induces M2 macrophage differentiation by STAT3 activation that correlates with gastric cancer progression.

23. Study on the association between PI3K/AKT/mTOR signaling pathway gene polymorphism and susceptibility to gastric cancer.

24. Tumour-activated neutrophils in gastric cancer foster immune suppression and disease progression through GM-CSF-PD-L1 pathway.

25. Increased tumor-infiltrating CD45RA - CCR7 - regulatory T-cell subset with immunosuppressive properties foster gastric cancer progress.

26. Tumor-Associated Monocytes/Macrophages Impair NK-Cell Function via TGFβ1 in Human Gastric Cancer.

27. Growth hormone-releasing hormone receptor antagonists inhibit human gastric cancer through downregulation of PAK1-STAT3/NF-κB signaling.

28. Altered phenotypic and functional characteristics of CD3+CD56+ NKT-like cells in human gastric cancer.

29. Interaction between Wnt/β-catenin pathway and microRNAs regulates epithelial-mesenchymal transition in gastric cancer (Review).

30. MiR-448 promotes glycolytic metabolism of gastric cancer by downregulating KDM2B.

31. MicroRNA-25 promotes gastric cancer migration, invasion and proliferation by directly targeting transducer of ERBB2, 1 and correlates with poor survival.

32. MicroRNA-141 inhibits tumor growth and metastasis in gastric cancer by directly targeting transcriptional co-activator with PDZ-binding motif, TAZ.

33. The Interaction Between MiR-141 and lncRNA-H19 in Regulating Cell Proliferation and Migration in Gastric Cancer.

34. Identification of differentially-expressed genes in intestinal gastric cancer by microarray analysis.

35. Function and subsets of dendritic cells and natural killer cells were decreased in gastric cancer.

36. [Real world clinical research of common complications and characteristics of traditional Chinese and western treatment in gastric malignant tumor inpatients].

37. Increased circulating Th22 and Th17 cells are associated with tumor progression and patient survival in human gastric cancer.

38. Increased intratumoral IL-22-producing CD4(+) T cells and Th22 cells correlate with gastric cancer progression and predict poor patient survival.

39. Increased tumor-infiltrating CD8(+)Foxp3(+) T lymphocytes are associated with tumor progression in human gastric cancer.

40. CD8(+) T cells that produce interleukin-17 regulate myeloid-derived suppressor cells and are associated with survival time of patients with gastric cancer.

41. Increased miR-222 in H. pylori-associated gastric cancer correlated with tumor progression by promoting cancer cell proliferation and targeting RECK.

42. Efficient adenovirus-mediated gene transfer to gastric tissue by oral administration.

43. [Comparison of DNA flow cytometry and microspectrophotometry in gastric carcinoma].

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