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1. Obesity Dysregulates the Immune Response to Influenza Infection and Vaccination Through Metabolic and Inflammatory Mechanisms.

2. Increased leptin levels correlate with thyroid autoantibodies in nonobese males.

3. Metabolic Regulation of T Lymphocytes.

4. A Novel Mechanism for Th17 Inflammation in Human Type 2 Diabetes Mellitus.

5. Metformin use associated with lower rate of hospitalization for influenza in individuals with diabetes.

6. Emerging mechanisms of obesity-associated immune dysfunction.

7. Insulin and IGF-1 have both overlapping and distinct effects on CD4+ T cell mitochondria, metabolism, and function.

8. Oxytocin Treatment May Improve Infant Feeding and Social Skills in Prader-Willi Syndrome.

10. Effects of T cell leptin signaling on systemic glucose tolerance and T cell responses in obesity.

11. Inflammation and Metabolism of Influenza-Stimulated Peripheral Blood Mononuclear Cells From Adults With Obesity Following Bariatric Surgery.

12. Malnutrition and immune cell subsets in children undergoing kidney transplantation.

13. Rheumatoid arthritis T cell and muscle oxidative metabolism associate with exercise-induced changes in cardiorespiratory fitness.

14. Irgm1 regulates metabolism and function in T cell subsets.

15. CD4 T cells differentially express cellular machinery for serotonin signaling, synthesis, and metabolism.

16. Obesity-Induced Changes in T-Cell Metabolism Are Associated With Impaired Memory T-Cell Response to Influenza and Are Not Reversed With Weight Loss.

17. Metabolic Alterations Contribute to Enhanced Inflammatory Cytokine Production in Irgm1-deficient Macrophages.

18. Suppression of Glut1 and Glucose Metabolism by Decreased Akt/mTORC1 Signaling Drives T Cell Impairment in B Cell Leukemia.

19. Reproduction and Growth in a Murine Model of Early Life-Onset Inflammatory Bowel Disease.

20. Metabolic programming and PDHK1 control CD4+ T cell subsets and inflammation.

21. Leptin Metabolically Licenses T Cells for Activation To Link Nutrition and Immunity.

22. Cutting Edge: Distinct Glycolytic and Lipid Oxidative Metabolic Programs Are Essential for Effector and Regulatory CD4+ T Cell Subsets.

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