利用纤维光度法解读小鼠焦虑背后的神经回路

IF 2.5 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Salma R. Abdennebi, Nour El Haya Touihri, Emmanuelle Corruble, Denis J. David, Indira Mendez-David
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引用次数: 0

摘要

焦虑症是世界上最普遍的精神健康状况之一,严重影响患者的生活。他们经常与其他精神疾病合并症,往往加剧其严重程度。目前的药物治疗;选择性血清素再摄取抑制剂(SSRIs)和苯二氮卓类药物的疗效仍然有限,并伴有不良副作用,因此迫切需要替代治疗方法。然而,由于对这些疾病背后的神经机制的不完全理解,开发新疗法的进展一直受到阻碍。弥合这一知识鸿沟需要先进的研究工具,能够更深入地了解与焦虑有关的神经回路。纤维光度法(FP)已成为一种测量自由运动动物模型神经活动的强大而经济的技术。通过实时监测特定大脑区域内特定神经群的钙动态,该方法提供了对正常生理过程和病理状态的宝贵见解。在这篇综述中,我们首先介绍了FP,详细介绍了它的设备、程序和主要优点和局限性。然后,我们对PubMed收录的39项研究进行了全面分析,这些研究使用FP来研究与焦虑有关的神经回路。我们的回顾揭示了该技术在不同研究领域的重大贡献,包括生理学(33%)、病理学(53%)和双重目的研究(13%)。除了总结其效用之外,我们的目标是使FP更易于研究人员使用。通过为其整合到未来的科学项目提供基础指导,我们的目标是促进焦虑研究的进展,并为开发新的治疗策略做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Leveraging Fiber Photometry to Decipher Neural Circuits Underlying Anxiety in Mice

Leveraging Fiber Photometry to Decipher Neural Circuits Underlying Anxiety in Mice

Anxiety disorders rank among the most prevalent mental health conditions worldwide, significantly affecting patients' lives. They are frequently comorbid with other psychiatric disorders, often exacerbating their severity. Current pharmacological treatments; selective serotonin reuptake inhibitors (SSRIs) and benzodiazepines, remain limited in efficacy and are associated with undesirable side effects, underscoring the urgent need for alternative therapeutic approaches. However, progress in developing new treatments has been hindered by an incomplete understanding of the neural mechanisms underlying these disorders. Bridging this knowledge gap requires advanced research tools capable of providing deeper insight into the neural circuits involved in anxiety. Fiber photometry (FP) has emerged as a powerful and cost-effective technique for measuring neural activity in freely moving animal models. By enabling real-time monitoring of calcium dynamics in specific neural populations within defined brain regions, this method offers invaluable insights into both normal physiological processes and pathological states. In this review, we first present an accessible introduction to FP, detailing its apparatus, procedures, and key advantages and limitations. We then conducted a comprehensive analysis of 39 studies indexed in PubMed that have employed FP to investigate neural circuits implicated in anxiety. Our review reveals the techniques' significant contributions across different research domains, including physiological (33%), pathological (53%), and dual-purpose studies (13%). Beyond summarizing its utility, our goal is to make FP more accessible to researchers. By providing a foundational guide for its integration into future scientific projects, we aim to facilitate advances in anxiety research and contribute to the development of novel therapeutic strategies.

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来源期刊
CiteScore
5.30
自引率
6.90%
发文量
111
审稿时长
6-12 weeks
期刊介绍: Fundamental & Clinical Pharmacology publishes reports describing important and novel developments in fundamental as well as clinical research relevant to drug therapy. Original articles, short communications and reviews are published on all aspects of experimental and clinical pharmacology including: Antimicrobial, Antiviral Agents Autonomic Pharmacology Cardiovascular Pharmacology Cellular Pharmacology Clinical Trials Endocrinopharmacology Gene Therapy Inflammation, Immunopharmacology Lipids, Atherosclerosis Liver and G-I Tract Pharmacology Metabolism, Pharmacokinetics Neuropharmacology Neuropsychopharmacology Oncopharmacology Pediatric Pharmacology Development Pharmacoeconomics Pharmacoepidemiology Pharmacogenetics, Pharmacogenomics Pharmacovigilance Pulmonary Pharmacology Receptors, Signal Transduction Renal Pharmacology Thrombosis and Hemostasis Toxicopharmacology Clinical research, including clinical studies and clinical trials, may cover disciplines such as pharmacokinetics, pharmacodynamics, pharmacovigilance, pharmacoepidemiology, pharmacogenomics and pharmacoeconomics. Basic research articles from fields such as physiology and molecular biology which contribute to an understanding of drug therapy are also welcomed.
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