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1. Ceramides Increase Fatty Acid Utilization in Intestinal Progenitors to Enhance Stemness and Increase Tumor Risk

4. Myeloid-Cell-Derived VEGF Maintains Brain Glucose Uptake and Limits Cognitive Impairment in Obesity

8. Adipocyte Ceramides Regulate Subcutaneous Adipose Browning, Inflammation, and Metabolism

12. Identification of a Paracrine Signaling Mechanism Linking CD34high Progenitors to the Regulation of Visceral Fat Expansion and Remodeling

14. Mitochondrial physiology: Gnaiger Erich et al ― MitoEAGLE Task Group

16. Serine Palmitoyltransferase Controls Stemness of Intestinal Progenitors

21. Identification of a Paracrine Signaling Mechanism Linking CD34high Progenitors to the Regulation of Visceral Fat Expansion and Remodeling

23. Mitochondrial respiratory states and rates

24. Targeting a ceramide double bond improves insulin resistance and hepatic steatosis

26. Conditional deletion ofDes1in the mouse retina does not impair the visual cycle in cones

27. Autophagy Ablation in Adipocytes Induces Insulin Resistance and Reveals Roles for Lipid Peroxide and Nrf2 Signaling in Adipose-Liver Crosstalk

32. Role of myeloid cells specific PDK-1 in inflammation and obesity induced insulin resistance

33. Signaling by IL-6 promotes alternative activation of macrophages to limit endotoxemia and obesity-associated resistance to insulin

38. The Drosophila mitotic inhibitor Frühstart specifically binds to the hydrophobic patch of cyclins.

39. Identification of a Paracrine Signaling Mechanism Linking CD34highProgenitors to the Regulation of Visceral Fat Expansion and Remodeling

40. Phosphoinositide-Dependent Kinase 1 Provides Negative Feedback Inhibition to Toll-Like Receptor-Mediated NF-B Activation in Macrophages.

41. Identification of a Paracrine Signaling Mechanism Linking CD34 high Progenitors to the Regulation of Visceral Fat Expansion and Remodeling.

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