Steroidogenic acute regulatory protein mediated variations of gender-specific sex neurosteroids in Alzheimer’s disease: Relevance to hormonal and neuronal imbalance

IF 7.5 1区 医学 Q1 BEHAVIORAL SCIENCES Neuroscience and Biobehavioral Reviews Pub Date : 2025-02-01 DOI:10.1016/j.neubiorev.2024.105969
Pulak R. Manna , Shengping Yang , Chayan Manna , Hope Waters , Md Ariful Islam , Arubala P. Reddy , Priyanka Rawat , P. Hemachandra Reddy
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Abstract

The steroidogenic acute regulatory (StAR) protein mediates the rate-liming step in neuro/steroid biosynthesis. Multifaceted and delicate changes during aging, disrupting hormonal and neuronal homeostasis, constitute human senescence, an inevitable phenomenon that attributes to increased morbidity and mortality. Aging, along with progressive decreases in bioactive neurosteroids, is the primary risk factor for Alzheimer’s disease (AD), which preferentially impacts two-thirds of women and one-third of men. AD is neuropathologically characterized by the accumulation of extracellular amyloid-β and intracellular phosphorylated Tau containing neurofibrillary tangles, resulting in dementia. Postmortem brains pertaining to gender-specific AD patients exhibit varied suppression of StAR and sex neurosteroid levels compared with age-matched cognitively healthy subjects, in which the attenuation of StAR is inversely correlated with the AD pathological markers. Interestingly, retinoid signaling upregulates StAR-motivated neurosteroid biosynthesis and reinstates various neurodegenerative vulnerabilities that promote AD pathogenesis. This review summarizes current understanding of StAR-driven alterations of sex neurosteroids in gender-specific AD risks and provides biochemical and molecular insights into therapeutic interventions for preventing and/or alleviating dementia for healthy aging.
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阿尔茨海默病中性别特异性神经甾体急性调节蛋白介导的变异:与激素失衡有关。
类固醇急性调节(StAR)蛋白介导神经/类固醇生物合成的速率限制步骤。衰老过程中多方面的变化,破坏了免疫系统和身体/激素的稳态,构成了人类衰老,这是一种不可避免的现象,可归因于发病率和死亡率的增加。衰老,以及生物活性神经类固醇的逐渐减少,是阿尔茨海默病(AD)的主要危险因素,它优先影响三分之二的女性和三分之一的男性。AD的神经病理学特征是细胞外淀粉样蛋白-β前体蛋白和细胞内含有神经原纤维缠结的磷酸化Tau的积累,导致痴呆。与年龄匹配的认知健康受试者相比,性别特异性AD患者的死后大脑表现出不同程度的StAR和神经类固醇水平抑制,其中StAR的衰减与病理标志物呈负相关。有趣的是,类维甲酸信号上调StAR驱动的神经类固醇生物合成,并恢复促进AD发病的各种神经退行性脆弱性。这篇综述总结了目前对star驱动的性神经类固醇在性别特异性AD风险中的改变的理解,并为预防和/或减轻健康老龄化痴呆的治疗干预提供了生化和分子见解。
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来源期刊
CiteScore
14.20
自引率
3.70%
发文量
466
审稿时长
6 months
期刊介绍: The official journal of the International Behavioral Neuroscience Society publishes original and significant review articles that explore the intersection between neuroscience and the study of psychological processes and behavior. The journal also welcomes articles that primarily focus on psychological processes and behavior, as long as they have relevance to one or more areas of neuroscience.
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