15 results on '"Tan Yi"'
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2. Diabetic Downregulation of Nrf2 Activity via ERK Contributes to Oxidative Stress–Induced Insulin Resistance in Cardiac Cells In Vitro and In Vivo
3. 605-P: Endothelial-Specific Overexpression of Metallothionein Prevents Diabetes Mellitus–Induced Impairment in Ischemia Angiogenesis via Preservation of HIF-1a/SDF-1/VEGF Signaling in Endothelial Progenitor Cells
4. 1831-P: Activating AMPK Mediates FGF1 Protection from NAFLD in Diabetic Mice
5. 473-P: HDAC Inhibition Augments TGF-ß-Induced JNK Activation, CTGF Expression, and NF-E2 Degradation Promoting Profibrotic Signaling in Renal Proximal Tubules
6. Endothelial Overexpression of Metallothionein Prevents Diabetes-Induced Impairment in Ischemia Angiogenesis Through Preservation of HIF-1α/SDF-1/VEGF Signaling in Endothelial Progenitor Cells
7. Inactivation of GSK-3β by Metallothionein Prevents Diabetes-Related Changes in Cardiac Energy Metabolism, Inflammation, Nitrosative Damage, and Remodeling
8. Erratum. Metallothionein Preserves Akt2 Activity and Cardiac Function via Inhibiting TRB3 in Diabetic Hearts. Diabetes 2018;67
9. 625-P: Metallothionein Improves Angiogenic Function of Endothelial Progenitor Cells via HIF-1α/SDF-1/Akt Pathway in Diabetic Limb Ischemia
10. CXCR7 Agonist TC14012 Improves Angiogenic Function of Endothelial Progenitor Cells in Diabetic Limb Ischemia
11. Metallothionein Preserves Akt2 Activity and Cardiac Function via Inhibiting TRB3 in Diabetic Hearts
12. Metallothionein Is Downstream of Nrf2 and Partially Mediates Sulforaphane Prevention of Diabetic Cardiomyopathy
13. Erratum. Metallothionein Preserves Akt2 Activity and Cardiac Function via Inhibiting TRB3 in Diabetic Hearts. Diabetes 2018;67.
14. Metallothionein Preserves Akt2 Activity and Cardiac Function via Inhibiting TRB3 in Diabetic Hearts.
15. Metallothionein Is Downstream of Nrf2 and Partially Mediates Sulforaphane Prevention of Diabetic Cardiomyopathy.
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