pepmg_

Study summary · research use only

NAD(+) metabolism and its roles in cellular processes during ageing

Review · human · Nature reviews. Molecular cell biology · 2021 · DOI 10.1038/s41580-020-00313-x · PMID 33353981

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This review describes NAD+ (nicotinamide adenine dinucleotide) as a coenzyme for redox reactions and a cofactor for enzymes including sirtuins, CD38, and poly(ADP-ribose) polymerases, with roles reported in metabolic pathways, DNA repair, chromatin remodelling, cellular senescence, and immune cell function. The authors report that NAD+ levels decline with age in rodent and human tissue, and describe this decline as linked to age-related conditions including cognitive decline, cancer, metabolic disease, sarcopenia, and frailty. The review discusses targeting NAD+ metabolism as a potential approach for these conditions, noting that questions remain about the mechanisms regulating NAD+ and about restoring it in aging humans.

Abstract

Nicotinamide adenine dinucleotide (NAD+) is a coenzyme for redox reactions, making it central to energy metabolism. NAD+ is also an essential cofactor for non-redox NAD+-dependent enzymes, including sirtuins, CD38 and poly(ADP-ribose) polymerases. NAD+ can directly and indirectly influence many key cellular functions, including metabolic pathways, DNA repair, chromatin remodelling, cellular senescence and immune cell function. These cellular processes and functions are critical for maintaining tissue and metabolic homeostasis and for healthy ageing. Remarkably, ageing is accompanied by a gradual decline in tissue and cellular NAD+ levels in multiple model organisms, including rodents and humans. This decline in NAD+ levels is linked causally to numerous ageing-associated diseases, including cognitive decline, cancer, metabolic disease, sarcopenia and frailty. Many of these ageing-associated diseases can be slowed down and even reversed by restoring NAD+ levels. Therefore, targeting NAD+ metabolism has emerged as a potential therapeutic approach to ameliorate ageing-related disease, and extend the human healthspan and lifespan. However, much remains to be learnt about how NAD+ influences human health and ageing biology. This includes a deeper understanding of the molecular mechanisms that regulate NAD+ levels, how to effectively restore NAD+ levels during ageing, whether doing so is safe and whether NAD+ repletion will have beneficial effects in ageing humans.

Read the full study on PubMed ↗ Open-access full text ↗

pepmg summarizes the peer-reviewed literature and links to every source — it sells nothing, ships nothing, and gives no medical, dosing, or human-use guidance. Don't just trust this summary: follow the citation to its source and read it yourself. Research use only.