Cellular circadian period and its deviation associate with Alzheimer’s pathology and brain aging in cognitively impaired older adults

昼夜节律 神经科学 句号(音乐) 认知功能衰退 阿尔茨海默病 认知 医学 生物 病理 生物标志物 脑老化 疾病 死后研究 内科学 衰老的大脑 老化 生物钟 心理学 衰老 内分泌学 睡眠剥夺对认知功能的影响 萎缩 胶质纤维酸性蛋白 细胞病理学 Tau病理学 淀粉样蛋白(真菌学) 生理学 海马体 中枢神经系统 人脑 神经影像学 神经退行性变
作者
Hyun Woong Roh,Sang Won Seo,Seong Hye Choi,Eun-Joo Kim,Soo Hyun Cho,B. C. Kim,Jin Soo Lee,Young-Sil An,Narae Kim,Bumhee Park,Sun Min Lee,So Young Moon,Dongha Lee,Chang Hyung Hong,Sang Joon Son,Eun Young Kim
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:123 (10): e2527236123-e2527236123 被引量:1
标识
DOI:10.1073/pnas.2527236123
摘要

Circadian rhythm disruption is recognized as a feature of aging and neurodegenerative disease, yet whether intrinsic cellular circadian properties relate to underlying processes in humans remains unknown. We measured intrinsic circadian period and its deviation from 24 h (Δ-period) using ex vivo bioluminescence in dermal fibroblasts from 135 older adults with cognitive complaints. Associations with plasma biomarkers (pTau-217, neurofilament light chain [NfL], and glial fibrillary acidic protein [GFAP]), amyloid positron emission tomography (PET), structural MRI, cognitive function, and clinical progression were examined within the amyloid-tau-neurodegeneration [ATN (IV)] framework, using multivariable models and Cox regression analyses. The median cellular circadian period was 24.2 h, while Δ-period increased with age. A longer intrinsic circadian period was selectively associated with higher pTau-217, NfL, and GFAP levels and medial temporal atrophy, consistent with Alzheimer's disease (AD)-related tau pathology, neurodegeneration, and glial activation. In contrast, greater Δ-period was associated with older age, poorer cognitive performance across multiple domains, and more widespread brain atrophy, consistent with broader aging-related neurodegenerative processes. Both longer period (HR = 4.41, 95% CI: 1.52 to 12.83) and greater Δ-period (HR = 2.65, 95% CI: 1.03 to 6.86) independently predicted faster clinical decline. Thus, cellular circadian period and Δ-period capture distinct biological processes-AD-related tau pathology vs. broader aging-related neurodegeneration-and together represent complementary cellular biomarkers with potential prognostic value in older adults with cognitive concerns.
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