14 results on '"Hu, Shunze"'
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2. Supplementary Figure 6 from Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
3. Supplementary Figure 3 from Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
4. Supplementary Figure 4 from Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
5. Supplementary Figure 1 from Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
6. Supplementary Figure Legends from Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
7. Supplementary Figure 5 from Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
8. Alzheimer’s Disease and Impaired Bone Microarchitecture, Regeneration and Potential Genetic Links
9. Long Noncoding RNA Expression Profiles of Rat Extrasynaptic and Synaptic Neurons Expressing the N-methyl-D-Aspartate Receptor Revealed by Microarray Analysis
10. Clinicopathological and prognostic significance of caveolin-1 and ATG4C expression in the epithelial ovarian cancer
11. Protein phosphatase 2A (PP2A) activation promotes axonal growth and recovery in the CNS
12. MicroRNA-34c Downregulation Ameliorates Amyloid-β-Induced Synaptic Failure and Memory Deficits by Targeting VAMP2
13. MicroRNA-34c Downregulation Ameliorates Amyloid-β-Induced Synaptic Failure and Memory Deficits by Targeting VAMP2.
14. Lipoxin A4 and Its Analogue Suppress the Tumor Growth of Transplanted H22 in Mice: The Role of Antiangiogenesis
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