NAD低下が老化時の体内時計を乱すことを解明(Low NAD Levels Disrupt the Body’s Internal Clock During Cellular Aging)

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2026-04-17 マックス・プランク研究所(MPG)

ドイツのマックス・プランク協会の研究チームは、細胞老化に伴うNAD(ニコチンアミドアデニンジヌクレオチド)の低下が、生体の概日リズム(体内時計)を乱すことを明らかにした。NADは細胞の代謝やエネルギー産生に重要な分子であり、その減少が時計遺伝子の調節機構に影響を与え、日内リズムの維持を阻害することが確認された。これにより、加齢に伴う睡眠障害や代謝異常の一因として、NAD低下が関与する可能性が示唆される。研究は、NADレベルの回復が体内時計の正常化や健康寿命延伸につながる可能性を示し、老化関連疾患の新たな治療戦略への応用が期待される。

NAD低下が老化時の体内時計を乱すことを解明(Low NAD Levels Disrupt the Body’s Internal Clock During Cellular Aging)
© mpihlr

<関連情報>

NAD+は心臓の老化における概日リズムを制御する NAD+ controls circadian rhythmicity during cardiac aging

Bryce J. Carpenter,Margaux Lecacheur,Yannick N. Mangold,Kai Cui,Stefan Günther,Marit W. Vermunt & Pieterjan Dierickx
Communications Biology  Published:11 March 2026
DOI:https://doi.org/10.1038/s42003-026-09818-1

Abstract

Disruption of the circadian clock as well as reduced NAD+ levels are both hallmarks of aging. While circadian rhythms and NAD+ metabolism have been linked in heart disease, their relationship during cardiac aging is less clear. Here, we show that aging leads to disruption of diurnal gene expression in the heart. Long-term supplementation with the NAD+ precursor nicotinamide riboside (NR) boosts NAD+ levels, reprograms the diurnal transcriptome, and reverses naturally occurring cardiac enlargement in aged female mice. In addition, drastic reduction of NAD+ levels in cardiomyocytes impairs PER2::luc oscillations, which is rescued by NR supplementation. Finally, we demonstrate that changes to the cardiac transcriptome due to NR treatment partially depend on the activity of SIRT1. These findings reveal an essential role for NAD+ in regulation of the cardiac circadian clock upon aging, which opens up new avenues to counteract age-related cardiac disorders.

細胞遺伝子工学
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