Disruption of circadian rhythms is associated with cognitive impairment during gestation
Shan Li, Jialu Xu, Han Yue, Jiaxin Yin, Yuqi Yuan, Sijia Ni, Haifei Wang, Yibin Zhang, Xiaobin Liao, Jing Tao, Yan Yang
Journal:JOURNAL OF NEUROENDOCRINOLOGY
IF:5
DOI:10.1111/jne.70178
PMID:41980611
Published:2026-04-14
research field:神经科学分子生物学生殖生物学认知科学时间生物学
Abstract
Disruption of circadian rhythms is increasingly recognized as a contributor to cognitive dysfunction, but its role in gestation-associated cognitive changes remains unexplored. Here we combine human cognitive screening with a comprehensive longitudinal mouse model to investigate whether gestational cognitive impairment and postpartum recovery are coupled with disruption and restoration of hippocampal circadian rhythms. Cognitive function was assessed in pregnant and postpartum women using the Montreal Cognitive Assessment (MoCA) and Mini-Mental State Examination (MMSE). In mice, four reproductive stages were compared: control, gestation, 1 month postpartum, and 3 months postpartum. Serum gonadotropins and sex hormones levels were quantified using ELISA. Home-cage locomotor activity was recorded over 48 h under a 12 h:12 h light–dark cycle. Hippocampal-dependent memory was evaluated using the novel object recognition test and Barnes maze at Zeitgeber times ZT6 (day) and ZT18 (night). Hippocampal amyloid β (A β ) deposition was visualized via immunofluorescence; protein expression of amyloid precursor protein (APP), β -site amyloid precursor protein cleaving enzyme-1 (BACE1), and phosphorylated tau was measured by Western blots. Hippocampal clock gene expression was quantified by RT-qPCR at six time points; circadian parameters (mesor, amplitude, acrophase) were derived by cosinor analysis and compared between groups. Human cognitive screening confirmed modest gestational decline with postpartum recovery. In mice, gestation disrupted daily locomotor activity rhythms and reduced nocturnal preference; both partially recovered by 1 month and fully by 3 months postpartum. Behaviourally, pregnancy impaired the normal day–night difference and performance in novel object exploration and Barnes maze, which recovered progressively. At the molecular level, gestation increased hippocampal APP and BACE1 expression, elevated A β 42 deposition, and induced tau hyperphosphorylation
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