光遗传学和化学遗传学:调节抑郁症啮齿动物模型神经回路的关键工具。

IF 3.4 3区 医学 Q2 NEUROSCIENCES
Frontiers in Neural Circuits Pub Date : 2025-02-25 eCollection Date: 2025-01-01 DOI:10.3389/fncir.2025.1516839
Shaowei Li, Jianying Zhang, Jiehui Li, Yajie Hu, Mingkuan Zhang, Haijun Wang
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引用次数: 0

摘要

光遗传学和化学遗传学是近年来备受关注的新兴神经调节技术。这些技术能够精确控制特定的神经元类型和神经回路,使研究人员能够研究抑郁症的细胞机制。这些技术的进步极大地促进了对抑郁症中涉及的神经回路的理解;当与其他新兴技术相结合时,它们为抑郁症的临床治疗提供了新的治疗靶点和诊断工具。此外,这些技术为新型抗抑郁药的开发提供了理论支持。本文主要综述了光遗传学和化学遗传学在啮齿动物模型中与类抑郁行为密切相关的几个脑区,如腹侧被盖区、伏隔核、前额皮质、海马、中缝背核和侧链的应用,并讨论了光遗传学和化学遗传学在未来研究中的潜力和挑战。此外,本文还讨论了这些技术对未来研究的潜力和挑战,并介绍了基于光遗传学和化学遗传学的声遗传学和气味遗传学的研究现状。具体而言,本研究旨在为未来研究光遗传学和化学遗传学在抑郁症啮齿动物神经回路中的作用提供可靠的见解和方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optogenetics and chemogenetics: key tools for modulating neural circuits in rodent models of depression.

Optogenetics and chemogenetics are emerging neuromodulation techniques that have attracted significant attention in recent years. These techniques enable the precise control of specific neuronal types and neural circuits, allowing researchers to investigate the cellular mechanisms underlying depression. The advancement in these techniques has significantly contributed to the understanding of the neural circuits involved in depression; when combined with other emerging technologies, they provide novel therapeutic targets and diagnostic tools for the clinical treatment of depression. Additionally, these techniques have provided theoretical support for the development of novel antidepressants. This review primarily focuses on the application of optogenetics and chemogenetics in several brain regions closely associated with depressive-like behaviors in rodent models, such as the ventral tegmental area, nucleus accumbens, prefrontal cortex, hippocampus, dorsal raphe nucleus, and lateral habenula and discusses the potential and challenges of optogenetics and chemogenetics in future research. Furthermore, this review discusses the potential and challenges these techniques pose for future research and describes the current state of research on sonogenetics and odourgenetics developed based on optogenetics and chemogenetics. Specifically, this study aimed to provide reliable insights and directions for future research on the role of optogenetics and chemogenetics in the neural circuits of depressive rodent models.

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来源期刊
CiteScore
6.00
自引率
5.70%
发文量
135
审稿时长
4-8 weeks
期刊介绍: Frontiers in Neural Circuits publishes rigorously peer-reviewed research on the emergent properties of neural circuits - the elementary modules of the brain. Specialty Chief Editors Takao K. Hensch and Edward Ruthazer at Harvard University and McGill University respectively, are supported by an outstanding Editorial Board of international experts. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics and the public worldwide. Frontiers in Neural Circuits launched in 2011 with great success and remains a "central watering hole" for research in neural circuits, serving the community worldwide to share data, ideas and inspiration. Articles revealing the anatomy, physiology, development or function of any neural circuitry in any species (from sponges to humans) are welcome. Our common thread seeks the computational strategies used by different circuits to link their structure with function (perceptual, motor, or internal), the general rules by which they operate, and how their particular designs lead to the emergence of complex properties and behaviors. Submissions focused on synaptic, cellular and connectivity principles in neural microcircuits using multidisciplinary approaches, especially newer molecular, developmental and genetic tools, are encouraged. Studies with an evolutionary perspective to better understand how circuit design and capabilities evolved to produce progressively more complex properties and behaviors are especially welcome. The journal is further interested in research revealing how plasticity shapes the structural and functional architecture of neural circuits.
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