908 results on '"Liu, Kangdong"'
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102. miR‐132‐3p promotes heat stimulation‐induced esophageal squamous cell carcinoma tumorigenesis by targeting KCNK2
103. Data from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
104. Supplemental Figure 3 from The Prolyl Isomerase Pin1 Is a Novel Target of 6,7,4′-Trihydroxyisoflavone for Suppressing Esophageal Cancer Growth
105. Data from Targeting AKT with Oridonin Inhibits Growth of Esophageal Squamous Cell Carcinoma In Vitro and Patient-Derived Xenografts In Vivo
106. Supplemental figure legends from Scutellarin Suppresses Patient-Derived Xenograft Tumor Growth by Directly Targeting AKT in Esophageal Squamous Cell Carcinoma
107. Data from Fluvastatin Inhibits HMG-CoA Reductase and Prevents Non–Small Cell Lung Carcinogenesis
108. Data from The Prolyl Isomerase Pin1 Is a Novel Target of 6,7,4′-Trihydroxyisoflavone for Suppressing Esophageal Cancer Growth
109. Supplemental Figure 2 from The Prolyl Isomerase Pin1 Is a Novel Target of 6,7,4′-Trihydroxyisoflavone for Suppressing Esophageal Cancer Growth
110. Supplemental Figure Legend from The Prolyl Isomerase Pin1 Is a Novel Target of 6,7,4′-Trihydroxyisoflavone for Suppressing Esophageal Cancer Growth
111. Supplementary Figure 4 from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
112. Figure S1 from Scutellarin Suppresses Patient-Derived Xenograft Tumor Growth by Directly Targeting AKT in Esophageal Squamous Cell Carcinoma
113. Supplemental Figure Legends from Kaempferol Targets RSK2 and MSK1 to Suppress UV Radiation-Induced Skin Cancer
114. Data from Scutellarin Suppresses Patient-Derived Xenograft Tumor Growth by Directly Targeting AKT in Esophageal Squamous Cell Carcinoma
115. Figure S1 from Targeting AKT with Oridonin Inhibits Growth of Esophageal Squamous Cell Carcinoma In Vitro and Patient-Derived Xenografts In Vivo
116. Data from Targeting Opsin4/Melanopsin with a Novel Small Molecule Suppresses PKC/RAF/MEK/ERK Signaling and Inhibits Lung Adenocarcinoma Progression
117. Supplemental Figure 2 from Kaempferol Targets RSK2 and MSK1 to Suppress UV Radiation-Induced Skin Cancer
118. Supplementary Figure Legends from Targeting Opsin4/Melanopsin with a Novel Small Molecule Suppresses PKC/RAF/MEK/ERK Signaling and Inhibits Lung Adenocarcinoma Progression
119. Data from Kaempferol Targets RSK2 and MSK1 to Suppress UV Radiation-Induced Skin Cancer
120. Supplementary Figures S1-7 from Fluvastatin Inhibits HMG-CoA Reductase and Prevents Non–Small Cell Lung Carcinogenesis
121. Table S1 from Scutellarin Suppresses Patient-Derived Xenograft Tumor Growth by Directly Targeting AKT in Esophageal Squamous Cell Carcinoma
122. UPS: Opportunities and challenges for gastric cancer treatment
123. Supplementary Figure Legends from Fluvastatin Inhibits HMG-CoA Reductase and Prevents Non–Small Cell Lung Carcinogenesis
124. Supplementary Methods from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
125. Supplemental Figure 1 from Kaempferol Targets RSK2 and MSK1 to Suppress UV Radiation-Induced Skin Cancer
126. Supplementary Table 1 from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
127. Supplementary Figure 3 from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
128. Supplementary Figures 1-5 from Targeting Opsin4/Melanopsin with a Novel Small Molecule Suppresses PKC/RAF/MEK/ERK Signaling and Inhibits Lung Adenocarcinoma Progression
129. Supplemental Figure 3 from Kaempferol Targets RSK2 and MSK1 to Suppress UV Radiation-Induced Skin Cancer
130. Supplementary Figure 2 from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
131. Supplemental Figure 1 from The Prolyl Isomerase Pin1 Is a Novel Target of 6,7,4′-Trihydroxyisoflavone for Suppressing Esophageal Cancer Growth
132. Supplementary Figure Legend from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
133. Supplementary Figure 1 from A Derivative of Chrysin Suppresses Two-Stage Skin Carcinogenesis by Inhibiting Mitogen- and Stress-Activated Kinase 1
134. Supplementary Table 1 from Fluvastatin Inhibits HMG-CoA Reductase and Prevents Non–Small Cell Lung Carcinogenesis
135. Aspirin Prevents Colorectal Cancer by Normalizing EGFR Expression
136. Circulating Prostaglandin Biosynthesis in Colorectal Cancer and Potential Clinical Significance
137. Additional file 3 of Toosendanin targeting eEF2 impedes Topoisomerase I & II protein translation to suppress esophageal squamous cell carcinoma growth
138. Table S1 from Targeting CDK12 for Cancer Therapy: Function, Mechanism, and Drug Discovery
139. Figure S1 from Targeting CDK12 for Cancer Therapy: Function, Mechanism, and Drug Discovery
140. Data from Targeting CDK12 for Cancer Therapy: Function, Mechanism, and Drug Discovery
141. Data from Sunlight UV-Induced Skin Cancer Relies upon Activation of the p38α Signaling Pathway
142. Supplementary Figure 1 from Sunlight UV-Induced Skin Cancer Relies upon Activation of the p38α Signaling Pathway
143. Supplementary Figure 3 from Sunlight UV-Induced Skin Cancer Relies upon Activation of the p38α Signaling Pathway
144. Supplementary Figure 4 from Sunlight UV-Induced Skin Cancer Relies upon Activation of the p38α Signaling Pathway
145. Supplementary Figure Legend from Sunlight UV-Induced Skin Cancer Relies upon Activation of the p38α Signaling Pathway
146. Supplementary Figure 2 from Sunlight UV-Induced Skin Cancer Relies upon Activation of the p38α Signaling Pathway
147. CAFrgDB: a database for cancer-associated fibroblasts related genes and their functions in cancer
148. Erianin suppresses constitutive activation of MAPK signaling pathway by inhibition of CRAF and MEK1/2
149. Repurposed pizotifen malate targeting NRF2 exhibits anti-tumor activity through inducing ferroptosis in esophageal squamous cell carcinoma
150. SRPK1 promotes metastasis of esophageal squamous cell carcinoma by phosphorylation of Gli3S664
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