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利用新技术探究阿尔茨海默病的神经回路机制。

Probing neural circuit mechanisms in Alzheimer's disease using novel technologies.

机构信息

Department of Anatomy and Neurobiology, School of Medicine, University of California, Irvine, CA, 92697, USA.

Center for Neural Circuit Mapping (CNCM), University of California, Irvine, CA, 92697, USA.

出版信息

Mol Psychiatry. 2023 Oct;28(10):4407-4420. doi: 10.1038/s41380-023-02018-x. Epub 2023 Mar 23.

Abstract

The study of Alzheimer's Disease (AD) has traditionally focused on neuropathological mechanisms that has guided therapies that attenuate neuropathological features. A new direction is emerging in AD research that focuses on the progressive loss of cognitive function due to disrupted neural circuit mechanisms. Evidence from humans and animal models of AD show that dysregulated circuits initiate a cascade of pathological events that culminate in functional loss of learning, memory, and other aspects of cognition. Recent progress in single-cell, spatial, and circuit omics informs this circuit-focused approach by determining the identities, locations, and circuitry of the specific cells affected by AD. Recently developed neuroscience tools allow for precise access to cell type-specific circuitry so that their functional roles in AD-related cognitive deficits and disease progression can be tested. An integrated systems-level understanding of AD-associated neural circuit mechanisms requires new multimodal and multi-scale interrogations that longitudinally measure and/or manipulate the ensemble properties of specific molecularly-defined neuron populations first susceptible to AD. These newly developed technological and conceptual advances present new opportunities for studying and treating circuits vulnerable in AD and represent the beginning of a new era for circuit-based AD research.

摘要

阿尔茨海默病(AD)的研究传统上集中在神经病理学机制上,这些机制指导了减轻神经病理学特征的治疗方法。AD 研究中出现了一个新的方向,即关注由于神经回路机制紊乱导致的认知功能进行性丧失。来自 AD 人类和动物模型的证据表明,失调的回路会引发一连串的病理事件,最终导致学习、记忆和认知的其他方面的功能丧失。单细胞、空间和回路组学的最新进展通过确定受 AD 影响的特定细胞的身份、位置和回路,为这种以回路为中心的方法提供了信息。最近开发的神经科学工具允许对特定细胞类型的回路进行精确访问,以便可以测试它们在 AD 相关认知缺陷和疾病进展中的功能作用。对 AD 相关神经回路机制的综合系统水平理解需要新的多模态和多尺度检测,这些检测可以纵向测量和/或操纵首先易受 AD 影响的特定分子定义神经元群体的整体特性。这些新开发的技术和概念上的进步为研究和治疗易受 AD 影响的回路提供了新的机会,并代表了基于回路的 AD 研究新时代的开始。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e2c/10827671/e0a7ead376b1/41380_2023_2018_Fig1_HTML.jpg

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