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20 results on '"LONGO M"'

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1. Impact of Pituitary Autoimmunity and Genetic Disorders on Growth Hormone Deficiency in Children and Adults

2. Hypoxia-Induced miR-210 Is Necessary for Vascular Regeneration upon Acute Limb Ischemia

3. Nutritional Factors, DNA Methylation, and Risk of Type 2 Diabetes and Obesity: Perspectives and Challenges

4. Adipose Tissue Dysfunction as Determinant of Obesity-Associated Metabolic Complications

5. DGAT1 and DGAT2 Inhibitors for Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD) Management: Benefits for Their Single or Combined Application.

6. Nutritional Interventions with Bacillus coagulans Improved Glucose Metabolism and Hyperinsulinemia in Mice with Acute Intermittent Porphyria.

7. The Non-Invasive Assessment of Circulating D-Loop and mt-ccf Levels Opens an Intriguing Spyhole into Novel Approaches for the Tricky Diagnosis of NASH.

8. DNA Methylation and Type 2 Diabetes: Novel Biomarkers for Risk Assessment?

9. Remodeling of Mitochondrial Plasticity: The Key Switch from NAFLD/NASH to HCC.

10. Germline Mutation Enrichment in Pathways Controlling Endothelial Cell Homeostasis in Patients with Brain Arteriovenous Malformation: Implication for Molecular Diagnosis.

11. Nutrition and Genetics in NAFLD: The Perfect Binomium.

12. Impact of Pituitary Autoimmunity and Genetic Disorders on Growth Hormone Deficiency in Children and Adults.

13. Hypoxia-Induced miR-210 Is Necessary for Vascular Regeneration upon Acute Limb Ischemia.

14. Alcohol or Gut Microbiota: Who Is the Guilty?

15. Dysregulation of Circular RNAs in Myotonic Dystrophy Type 1.

16. miRNA Signature in NAFLD: A Turning Point for a Non-Invasive Diagnosis.

17. Genetic and Epigenetic Modifiers of Alcoholic Liver Disease.

18. miR-214-Dependent Increase of PHLPP2 Levels Mediates the Impairment of Insulin-Stimulated Akt Activation in Mouse Aortic Endothelial Cells Exposed to Methylglyoxal.

19. Magnetically Bioprinted Human Myometrial 3D Cell Rings as A Model for Uterine Contractility.

20. Methylglyoxal-Glyoxalase 1 Balance: The Root of Vascular Damage.

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