Tissue-level oscillation is achieved by tissue-intrinsic clocks along with network-dependent signals originating from distal organs and organismal behavior. Yet, it remains unexplored whether maternal circadian rhythms during pregnancy influence fetal rhythms and impact long-term susceptibility to dietary challenges in offspring. Here, we demonstrate that circadian disruption during pregnancy decreased placental and neonatal weight yet retained transcriptional and structural maturation. Intriguingly, diet-induced obesity was exacerbated in parallel with arrhythmic feeding behavior, hypothalamic leptin resistance, and hepatic circadian reprogramming in offspring of chronodisrupted mothers. In utero circadian desynchrony altered the phase-relationship between the mother and fetus and impacted placental efficiency. Temporal feeding restriction in offspring failed to fully prevent obesity, whereas the circadian alignment of caloric restriction with the onset of the active phase virtually ameliorated the phenotype. Thus, maternal circadian rhythms during pregnancy confer adaptive properties to metabolic functions in offspring and provide insights into the developmental origins of health and disease.
Maternal circadian rhythms during pregnancy dictate metabolic plasticity in offspring.
怀孕期间母体的昼夜节律决定了后代的代谢可塑性
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作者:Yao Na, Kinouchi Kenichiro, Katoh Manami, Ashtiani Kousha Changizi, Abdelkarim Sherif, Morimoto Hiroyuki, Torimitsu Takuto, Kozuma Takahide, Iwahara Akihide, Kosugi Shotaro, Komuro Jin, Kato Kyosuke, Tonomura Shun, Nakamura Toshifumi, Itoh Arata, Yamaguchi Shintaro, Yoshino Jun, Irie Junichiro, Hashimoto Hisayuki, Yuasa Shinsuke, Satoh Akiko, Mikami Yohei, Uchida Shusaku, Ueki Takatoshi, Nomura Seitaro, Baldi Pierre, Hayashi Kaori, Itoh Hiroshi
| 期刊: | Cell Metabolism | 影响因子: | 30.900 |
| 时间: | 2025 | 起止号: | 2025 Feb 4; 37(2):395-412 |
| doi: | 10.1016/j.cmet.2024.12.002 | 研究方向: | 代谢 |
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