407 results on '"Sun, Fenyong"'
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52. Chapter 3 - Clinical laboratory and imaging diagnosis of pancreatic diseases
53. Nuclear Factor Y Is Required for Basal Activation and Chromatin Accessibility of Fibroblast Growth Factor Receptor 2 Promoter in Osteoblast-like Cells
54. Involvement of Sp1 binding sequences in basal transcription of the rat fibroblast growth factor-2 gene in neonatal cardiomyocytes
55. SNHG9 Promotes the Hepatoblastoma Tumorigenesis via miR-23a-5p/Wnt3a Axis
56. SNHG9 promotes Hepatoblastoma Tumorigenesis via miR-23a-5p/Wnt3a Axis
57. Identification and Exploration of Novel Macrophage M2-Related Biomarkers and Potential Therapeutic Agents in Endometriosis
58. N-Myristoylation by NMT1 Is POTEE-Dependent to Stimulate Liver Tumorigenesis via Differentially Regulating Ubiquitination of Targets
59. All-Trans Retinoic Acid Induces Chromatin Remodeling at the Promoter of the Mouse Liver, Bone, and Kidney Alkaline Phosphatase Gene in C3H10T 1/2 Cells
60. NRAGE promotes cell proliferation by stabilizing PCNA in a ubiquitin-proteasome pathway in esophageal carcinomas
61. Contrary Effects of BMP-2 and ATRA on Adipogenesis in Mouse Mesenchymal Fibroblasts
62. IL‐27 improves adoptive CD8+ T cells' antitumor activity via enhancing cell survival and memory T cell differentiation.
63. m6A mRNA methylation regulates CTNNB1 to promote the proliferation of hepatoblastoma
64. The Biological Roles of lncRNAs and Future Prospects in Clinical Application
65. Spatial confinement of chemically engineered cancer cells using large graphene oxide sheets: a new mode of cancer therapy
66. Mutual Interaction Between Yap And Creb Promotes Tumorigenesis in Liver Cancer
67. Dynamic analysis of m6A methylation spectroscopy during progression and reversal of hepatic fibrosis
68. Emerging Role of Protein Post-Translational Modification in the Potential Clinical Application of Cancer
69. Rapid Label-Free Isolation of Circulating Tumor Cells from Patients’ Peripheral Blood Using Electrically Charged Fe3O4 Nanoparticles
70. Choice of Treatment for Stage IA Non-small Cell Lung Cancer Patients Ineligible for Surgery: Ablation or Stereotactic Body Radiotherapy?
71. CREB up-regulates long non-coding RNA, HULC expression through interaction with microRNA-372 in liver cancer
72. O-GlcNAcylated c-Jun antagonizes ferroptosis via inhibiting GSH synthesis in liver cancer
73. Remodeling of chromatin structure within the promoter is important for bmp-2-induced fgfr3 expression
74. MIR145-3ppromotes autophagy and enhances bortezomib sensitivity in multiple myeloma by targetingHDAC4
75. Ferroptosis is governed by differential regulation of transcription in liver cancer
76. ILF2 Directly Binds and Stabilizes CREB to Stimulate Malignant Phenotypes of Liver Cancer Cells
77. O-GlcNAcylation of YY1 stimulates tumorigenesis in colorectal cancer cells by targeting SLC22A15 and AANAT
78. CircHMGCS1 Promotes Hepatoblastoma Cell Proliferation by Regulating the IGF Signaling Pathway and Glutaminolysis
79. Correction: Li et al. m 6 A mRNA Methylation Regulates LKB1 to Promote Autophagy of Hepatoblastoma Cells through Upregulated Phosphorylation of AMPK. Genes 2021, 12 , 1747.
80. LINC00665/miR-9-5p/ATF1 is a novel axis involved in the progression of colorectal cancer.
81. MIR145-3p promotes autophagy and enhances bortezomib sensitivity in multiple myeloma by targeting HDAC4.
82. Rapid Label-Free Isolation of Circulating Tumor Cells from Patients' Peripheral Blood Using Electrically Charged Fe3O4 Nanoparticles.
83. High glucose stimulates proliferative capacity of liver cancer cells possibly via O ‐GlcNAcylation‐dependent transcriptional regulation of GJC1
84. (−)-Guaiol regulates autophagic cell death depending on mTOR signaling in NSCLC
85. Angiopoietin-2 (Ang-2) is a useful serum tumor marker for liver cancer in the Chinese population
86. AMOT is required for YAP function in high glucose induced liver malignancy
87. TFCP2 Is Required for YAP-Dependent Transcription to Stimulate Liver Malignancy
88. Sirt1 suppresses Wnt/βCatenin signaling in liver cancer cells by targeting βCatenin in a PKAα-dependent manner
89. Sirtuin 6 plays an oncogenic role and induces cell autophagy in esophageal cancer cells
90. The essential role of YAP O-GlcNAcylation in high-glucose-stimulated liver tumorigenesis
91. NRAGE induces β-catenin/Arm O-GlcNAcylation and negatively regulates Wnt signaling
92. 12-O-Tetradecanoylphorbol-13-acetate (TPA) is anti-tumorigenic in liver cancer cells via inhibiting YAP through AMOT
93. Reciprocal regulation between βTrCP and Smurf1 suppresses proliferative capacity of liver cancer cells
94. Blocking inhibition to YAP by ActinomycinD enhances anti-tumor efficacy of Corosolic acid in treating liver cancer
95. Reciprocal regulation between O-GlcNAcylation and tribbles pseudokinase 2 (TRIB2) maintains transformative phenotypes in liver cancer cells
96. MIR145-3ppromotes autophagy and enhances bortezomib sensitivity in multiple myeloma by targeting HDAC4
97. High glucose stimulates proliferative capacity of liver cancer cells possibly via O‐GlcNAcylation‐dependent transcriptional regulation of GJC1.
98. Effects of exercise intervention in breast cancer survivors: a meta-analysis of 33 randomized controlled trails
99. RAD51 regulates CHK1 stability via autophagy to promote cell growth in esophageal squamous carcinoma cells
100. MiroRNA-127-3p targets XRCC3 to enhance the chemosensitivity of esophageal cancer cells to a novel phenanthroline-dione derivative
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