Wang Yiwei, Mishra Aarti, Brinton Roberta Diaz
Center for Innovation in Brain Science, University of Arizona, Tucson, AZ, 85721, USA.
F1000Res. 2020 Jan 30;9. doi: 10.12688/f1000research.21599.1. eCollection 2020.
The brain undergoes two aging programs: chronological and endocrinological. This is particularly evident in the female brain, which undergoes programs of aging associated with reproductive competency. Comprehensive understanding of the dynamic metabolic and neuroinflammatory aging process in the female brain can illuminate windows of opportunities to promote healthy brain aging. Bioenergetic crisis and chronic low-grade inflammation are hallmarks of brain aging and menopause and have been implicated as a unifying factor causally connecting genetic risk factors for Alzheimer's disease and other neurodegenerative diseases. In this review, we discuss metabolic phenotypes of pre-menopausal, peri-menopausal, and post-menopausal aging and their consequent impact on the neuroinflammatory profile during each transition state. A critical aspect of the aging process is the dynamic metabolic neuro-inflammatory profiles that emerge during chronological and endocrinological aging. These dynamic systems of biology are relevant to multiple age-associated neurodegenerative diseases and provide a therapeutic framework for prevention and delay of neurodegenerative diseases of aging. While these findings are based on investigations of the female brain, they have a broader fundamental systems of biology strategy for investigating the aging male brain. Molecular characterization of alterations in fuel utilization and neuroinflammatory mechanisms during these neuro-endocrine transition states can inform therapeutic strategies to mitigate the risk of Alzheimer's disease in women. We further discuss a precision hormone replacement therapy approach to target symptom profiles during endocrine and chronological aging to reduce risk for age-related neurodegenerative diseases.
按时间顺序的衰老和内分泌相关的衰老。这在女性大脑中尤为明显,女性大脑会经历与生殖能力相关的衰老过程。全面了解女性大脑中动态的代谢和神经炎症衰老过程,有助于找到促进大脑健康衰老的机会窗口。生物能量危机和慢性低度炎症是大脑衰老和更年期的标志,并且被认为是将阿尔茨海默病和其他神经退行性疾病的遗传风险因素因果联系起来的一个统一因素。在这篇综述中,我们讨论绝经前、围绝经期和绝经后衰老的代谢表型,以及它们在每个过渡阶段对神经炎症特征的影响。衰老过程的一个关键方面是在按时间顺序的衰老和内分泌相关的衰老过程中出现的动态代谢神经炎症特征。这些动态生物学系统与多种与年龄相关的神经退行性疾病相关,并为预防和延缓衰老相关神经退行性疾病提供了一个治疗框架。虽然这些发现是基于对女性大脑的研究,但它们为研究衰老男性大脑提供了一个更广泛的基础生物学策略。在这些神经内分泌过渡阶段,对燃料利用和神经炎症机制变化的分子特征分析,可以为减轻女性患阿尔茨海默病风险的治疗策略提供依据。我们还讨论了一种精准激素替代疗法,该疗法针对内分泌和按时间顺序衰老过程中的症状特征,以降低与年龄相关的神经退行性疾病的风险。