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Your search keyword '"Tammaro, Alessandra"' showing total 31 results

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31 results on '"Tammaro, Alessandra"'

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1. A conserved complex lipid signature marks human muscle aging and responds to short-term exercise

2. HDAC1/2 inhibitor therapy improves multiple organ systems in aged mice

3. Author Correction: Obesity aggravates acute kidney injury resulting from ischemia and reperfusion in mice

5. Obesity aggravates acute kidney injury resulting from ischemia and reperfusion in mice

7. WCN24-2457 Air Pollution and Kidney Diseases in São Paulo City

9. Treatment with a selective histone deacetylase (HDAC) 1 and 2 inhibitor in aged mice rejuvenates multiple organ systems

10. Air Pollution Aggravates Renal Ischemia-Reperfusion-Induced Acute Kidney Injury

11. NLRX1 Prevents M2 Macrophage Polarization and Excessive Renal Fibrosis in Chronic Obstructive Nephropathy.

16. NAD + Metabolism and Interventions in Premature Renal Aging and Chronic Kidney Disease.

17. Reduced nicotinamide mononucleotide is a new and potent NAD+precursor in mammalian cells and mice

18. The dysregulation of metabolic pathways and induction of the pentose phosphate pathway in renal ischaemia–reperfusion injury

20. Immune-mediated mechanisms of (mal)adaptive renal tissue repair

21. TREM1/3 Deficiency Impairs Tissue Repair After Acute Kidney Injury and Mitochondrial Metabolic Flexibility in Tubular Epithelial Cells

22. Correction: Corrigendum: Effect of TREM-1 blockade and single nucleotide variants in experimental renal injury and kidney transplantation

24. The calcium-binding protein complex S100A8/A9 has a crucial role in controlling macrophage-mediated renal repair following ischemia/reperfusion

26. Reduced nicotinamide mononucleotide is a new and potent NAD+ precursor in mammalian cells and mice.

28. NLRX1 and TFEB in metabolism and renal diseases

29. HDAC1/2 inhibitor therapy improves multiple organ systems in aged mice.

30. NAD + Metabolism and Interventions in Premature Renal Aging and Chronic Kidney Disease.

31. Effect of TREM-1 blockade and single nucleotide variants in experimental renal injury and kidney transplantation.

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