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星形胶质细胞表型组学作为健康衰老和阿尔茨海默病进展中新的可成药靶点。

Astrocytes phenomics as new druggable targets in healthy aging and Alzheimer's disease progression.

作者信息

Lana Daniele, Ugolini Filippo, Iovino Ludovica, Attorre Selene, Giovannini Maria Grazia

机构信息

Section of Clinical Pharmacology and Oncology, Department of Health Sciences, University of Florence, Florence, Italy.

Section of Pathological Anatomy, Department of Health Sciences, University of Florence, Florence, Italy.

出版信息

Front Cell Neurosci. 2025 Jan 6;18:1512985. doi: 10.3389/fncel.2024.1512985. eCollection 2024.

Abstract

For over a century after their discovery astrocytes were regarded merely as cells located among other brain cells to hold and give support to neurons. Astrocytes activation, "astrocytosis" or A1 functional state, was considered a detrimental mechanism against neuronal survival. Recently, the scientific view on astrocytes has changed. Accumulating evidence indicate that astrocytes are not homogeneous, but rather encompass heterogeneous subpopulations of cells that differ from each other in terms of transcriptomics, molecular signature, function and response in physiological and pathological conditions. In this review, we report and discuss the recent literature on the phenomic differences of astrocytes in health and their modifications in disease conditions, focusing mainly on the hippocampus, a region involved in learning and memory encoding, in the age-related memory impairments, and in Alzheimer's disease (AD) dementia. The morphological and functional heterogeneity of astrocytes in different brain regions may be related to their different housekeeping functions. Astrocytes that express diverse transcriptomics and phenomics are present in strictly correlated brain regions and they are likely responsible for interactions essential for the formation of the specialized neural circuits that drive complex behaviors. In the contiguous and interconnected hippocampal areas CA1 and CA3, astrocytes show different, finely regulated, and region-specific heterogeneity. Heterogeneous astrocytes have specific activities in the healthy brain, and respond differently to physiological or pathological stimuli, such as inflammaging present in normal brain aging or beta-amyloid-dependent neuroinflammation typical of AD. To become reactive, astrocytes undergo transcriptional, functional, and morphological changes that transform them into cells with different properties and functions. Alterations of astrocytes affect the neurovascular unit, the blood-brain barrier and reverberate to other brain cell populations, favoring or dysregulating their activities. It will be of great interest to understand whether the differential phenomics of astrocytes in health and disease can explain the diverse vulnerability of the hippocampal areas to aging or to different damaging insults, in order to find new astrocyte-targeted therapies that might prevent or treat neurodegenerative disorders.

摘要

在星形胶质细胞被发现后的一个多世纪里,它们仅仅被视为位于其他脑细胞之间、用于支撑神经元的细胞。星形胶质细胞的激活、“星形胶质细胞增生”或A1功能状态,被认为是一种对神经元存活有害的机制。最近,关于星形胶质细胞的科学观点发生了变化。越来越多的证据表明,星形胶质细胞并非同质化的,而是包含了异质性的细胞亚群,这些亚群在转录组学、分子特征、功能以及生理和病理条件下的反应等方面存在差异。在这篇综述中,我们报告并讨论了近期有关健康状态下星形胶质细胞表型差异及其在疾病状态下变化的文献,主要聚焦于海马体,这是一个与学习和记忆编码、年龄相关的记忆障碍以及阿尔茨海默病(AD)痴呆相关的脑区。不同脑区星形胶质细胞的形态和功能异质性可能与其不同的管家功能有关。表达不同转录组学和表型组学的星形胶质细胞存在于紧密相关的脑区,它们可能负责驱动复杂行为的特殊神经回路形成所必需的相互作用。在相邻且相互连接的海马区CA1和CA3中,星形胶质细胞表现出不同的、精细调节的区域特异性异质性。异质性星形胶质细胞在健康大脑中具有特定活动,并且对生理或病理刺激(如正常脑老化中存在的炎症衰老或AD典型的β淀粉样蛋白依赖性神经炎症)反应不同。为了变得具有反应性,星形胶质细胞会经历转录、功能和形态变化,从而转变为具有不同特性和功能的细胞。星形胶质细胞的改变会影响神经血管单元、血脑屏障,并对其他脑细胞群体产生影响,促进或失调它们的活动。了解健康和疾病状态下星形胶质细胞的差异表型组学是否能够解释海马区对衰老或不同损伤性刺激的不同易损性,以便找到可能预防或治疗神经退行性疾病的新的以星形胶质细胞为靶点的疗法,将是非常有意义的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfd8/11743640/7db33a61d4bf/fncel-18-1512985-g001.jpg

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