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1. Trigonelline is an NAD+ precursor that improves muscle function during ageing and is reduced in human sarcopenia

5. NAD precursors cycle between host tissues and the gut microbiome

8. SLC25A51 is a mammalian mitochondrial NAD+ transporter

16. Regulation of and challenges in targeting NAD+metabolism

18. Loss of NAD Homeostasis Leads to Progressive and Reversible Degeneration of Skeletal Muscle

19. An abundant biliary metabolite derived from dietary omega-3 polyunsaturated fatty acids regulates triglycerides

21. Purine nucleoside phosphorylase controls nicotinamide riboside metabolism in mammalian cells

22. Defining NAD(P)(H) Catabolism.

27. Nicotinamide Riboside and Dihydronicotinic Acid Riboside Synergistically Increase Intracellular NAD+ by Generating Dihydronicotinamide Riboside

31. Dihydronicotinamide Riboside Is a Potent NAD+ Precursor Promoting a Pro-Inflammatory Phenotype in Macrophages

34. NAD+ flux is maintained in aged mice despite lower tissue concentrations

35. NAD precursors cycle between host tissues and the gut microbiome

36. NAD+ bioavailability mediates PARG inhibition-induced replication arrest, intra S-phase checkpoint and apoptosis in glioma stem cells

38. Overcoming Temozolomide Resistance in Glioblastoma via Enhanced NAD + Bioavailability and Inhibition of Poly-ADP-Ribose Glycohydrolase.

41. Nicotinamide Riboside and Dihydronicotinic Acid Riboside Synergistically Increase Intracellular NAD + by Generating Dihydronicotinamide Riboside.

44. Dihydronicotinamide Riboside Is a Potent NAD+ Precursor Promoting a Pro-Inflammatory Phenotype in Macrophages.

45. Equilibrative Nucleoside Transporters Mediate the Import of Nicotinamide Riboside and Nicotinic Acid Riboside into Human Cells

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