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19 results on '"Ja Young Kim-Muller"'

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1. GDF15 neutralization restores muscle function and physical performance in a mouse model of cancer cachexia

2. Cyb5r3 links FoxO1-dependent mitochondrial dysfunction with β-cell failure

3. Aldehyde dehydrogenase 1a3 defines a subset of failing pancreatic β cells in diabetic mice

4. Cyb5r3 links FoxO1-dependent mitochondrial dysfunction with β-cell failure

5. Pathological Type-2 Immune Response, Enhanced Tumor Growth, and Glucose Intolerance in Retnlβ (RELMβ) Null Mice

6. Aldehyde dehydrogenase 1a3 defines a subset of failing pancreatic β cells in diabetic mice

7. FoxO1 Deacetylation Decreases Fatty Acid Oxidation in β-Cells and Sustains Insulin Secretion in Diabetes

8. Growth differentiation factor 15 (GDF-15) inhibition to increase muscle mass and function in cancer cachexia

9. Metabolic Inflexibility Impairs Insulin Secretion and Results In MODY-like Diabetes in Triple FoxO-Deficient Mice

10. Blunted Refeeding Response and Increased Locomotor Activity in Mice Lacking FoxO1 in Synapsin-Cre–Expressing Neurons

11. Pair Feeding, but Not Insulin, Phloridzin, or Rosiglitazone Treatment, Curtails Markers of β-Cell Dedifferentiation in

12. Altered Plasma Profile of Antioxidant Proteins as an Early Correlate of Pancreatic β Cell Dysfunction

13. Pathological Type-2 Immune Response, Enhanced Tumor Growth, and Glucose Intolerance in Retnlβ (RELMβ) Null Mice: A Model of Intestinal Immune System Dysfunction in Disease Susceptibility

14. Selective Insulin Sensitizers

15. Increased atherosclerosis and endothelial dysfunction in mice bearing constitutively deacetylated alleles of Foxo1 gene

16. Cell biology. Selective insulin sensitizers

17. Proatherogenic abnormalities of lipid metabolism in SirT1 transgenic mice are mediated through Creb deacetylation

18. FoxO1 Deacetylation Decreases Fatty Acid Oxidation in β-Cells and Sustains Insulin Secretion in Diabetes.

19. Altered Plasma Profile of Antioxidant Proteins as an Early Correlate of Pancreatic β Cell Dysfunction.

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