Suggested reading
Association of Human Whole Blood NAD+Contents With Aging
Yang et al 2022
Dietary supplementation with NAD+-boosting compounds in humans: Current knowledge and future directions
Freeberg et al 2023
Elevation of NAD+ by nicotinamide riboside spares spinal cord tissue from injury and promotes locomotor recovery
Metcalfe et al 2023
Evaluation of potential aging biomarkers in healthy individuals: telomerase, AGEs, GDF11/15, sirtuin 1, NAD+, NLRP3, DNA/RNA damage, and klotho
Borsky et al 2023
Human ovarian aging is characterized by oxidative damage and mitochondrial dysfunction
Smits et al 2023
NAD+-boosting compounds enhance nitric oxide production and prevent oxidative stress in endothelial cells exposed to plasma from patients with COVID-19.
Freeberg et al 2023
NAD depletion mediates cytotoxicity in human neurons with autophagy deficiency
Sun et al. 2023
NAD+repletion with niacin counteracts cancer cachexia
Beltrà et al 2023
Niacin Cures Systemic NAD+ Deficiency and Improves Muscle Performance in Adult-Onset Mitochondrial Myopathy
Pirinen et al 2020
Nicotinamide enhances myelin production after demyelination through reduction of astrogliosis and microgliosis
Kaplanis et al 2023
Nicotinamide riboside improves muscle mitochondrial biogenesis, satellite cell differentiation, and gut microbiota in a twin study
Lapatto et al 2023
Preclinical characterization of pharmacological NAD+ boosting as a promising therapeutic approach in Rheumatoid Arthritis
Perez-Sanchez et al 2023
SARS-CoV-2 infection dysregulates NAD metabolism
Idazpanah et al 2023
The NADPARK study: A randomized phase I trial of nicotinamide riboside supplementation in Parkinson’s disease
Brakedal et al 2021
The Promise of Niacin in Neurology
Wuerch et al 2023
