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Science Advances|March 19, 2025
PPDPF: Preventing kidney disease through NAD<sup>+</sup> regulationShin-Ichiro ImaiCell Biochemistry and Biophysics|January 9, 2009
The NAD World: a new systemic regulatory network for metabolism and aging--Sirt1, systemic NAD biosynthesis, and their importanceShin-Ichiro ImaiNPJ Systems Biology and Applications|July 21, 2017
The NAD World 2.0: the importance of the inter-tissue communication mediated by NAMPT/NAD<sup>+</sup>/SIRT1 in mammalian aging and longevity controlShin-Ichiro ImaiCurrent Opinion in Clinical Nutrition and Metabolic Care|May 29, 2009
SIRT1 and caloric restriction: an insight into possible trade-offs between robustness and frailtyShin-ichiro ImaiCurrent Pharmaceutical Design|January 20, 2009
Nicotinamide phosphoribosyltransferase (Nampt): a link between NAD biology, metabolism, and diseasesShin-Ichiro ImaiClinical Calcium|December 27, 2012
[The sirtuin family : regulators that connect metabolism, aging, and longevity]Shin-ichiro ImaiFEBS Letters|May 10, 2011
Dissecting systemic control of metabolism and aging in the NAD World: the importance of SIRT1 and NAMPT-mediated NAD biosynthesisShin-ichiro ImaiCornea|October 12, 2010
Toward productive aging: SIRT1, systemic NAD biosynthesis, and the NAD worldShin-ichiro ImaiBiochimica Et Biophysica Acta|March 18, 2009
From heterochromatin islands to the NAD World: a hierarchical view of aging through the functions of mammalian Sirt1 and systemic NAD biosynthesisShin-ichiro ImaiPharmacological Research|January 21, 2010
A possibility of nutriceuticals as an anti-aging intervention: activation of sirtuins by promoting mammalian NAD biosynthesisShin-Ichiro ImaiPageof 9