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核成像在理解实验动物脑疾病神经基质中的作用:现状与未来展望

Role of Nuclear Imaging to Understand the Neural Substrates of Brain Disorders in Laboratory Animals: Current Status and Future Prospects.

作者信息

D'Elia Annunziata, Schiavi Sara, Soluri Andrea, Massari Roberto, Soluri Alessandro, Trezza Viviana

机构信息

Institute of Biochemistry and Cell Biology, National Research Council of Italy (CNR), Rome, Italy.

Section of Biomedical Sciences and Technologies, Department of Science, University "Roma Tre", Rome, Italy.

出版信息

Front Behav Neurosci. 2020 Dec 11;14:596509. doi: 10.3389/fnbeh.2020.596509. eCollection 2020.

Abstract

Molecular imaging, which allows the real-time visualization, characterization and measurement of biological processes, is becoming increasingly used in neuroscience research. Scintigraphy techniques such as single photon emission computed tomography (SPECT) and positron emission tomography (PET) provide qualitative and quantitative measurement of brain activity in both physiological and pathological states. Laboratory animals, and rodents in particular, are essential in neuroscience research, providing plenty of models of brain disorders. The development of innovative high-resolution small animal imaging systems together with their radiotracers pave the way to the study of brain functioning and neurotransmitter release during behavioral tasks in rodents. The assessment of local changes in the release of neurotransmitters associated with the performance of a given behavioral task is a turning point for the development of new potential drugs for psychiatric and neurological disorders. This review addresses the role of SPECT and PET small animal imaging systems for a better understanding of brain functioning in health and disease states. Brain imaging in rodent models faces a series of challenges since it acts within the boundaries of current imaging in terms of sensitivity and spatial resolution. Several topics are discussed, including technical considerations regarding the strengths and weaknesses of both technologies. Moreover, the application of some of the radioligands developed for small animal nuclear imaging studies is discussed. Then, we examine the changes in metabolic and neurotransmitter activity in various brain areas during task-induced neural activation with special regard to the imaging of opioid, dopaminergic and cannabinoid receptors. Finally, we discuss the current status providing future perspectives on the most innovative imaging techniques in small laboratory animals. The challenges and solutions discussed here might be useful to better understand brain functioning allowing the translation of preclinical results into clinical applications.

摘要

分子成像能够实现生物过程的实时可视化、特征描述和测量,在神经科学研究中的应用越来越广泛。单光子发射计算机断层扫描(SPECT)和正电子发射断层扫描(PET)等闪烁成像技术可对生理和病理状态下的脑活动进行定性和定量测量。实验动物,尤其是啮齿动物,在神经科学研究中至关重要,可提供大量脑部疾病模型。创新的高分辨率小动物成像系统及其放射性示踪剂的发展为研究啮齿动物行为任务期间的脑功能和神经递质释放铺平了道路。评估与特定行为任务表现相关的神经递质释放的局部变化是开发治疗精神和神经疾病新潜在药物的转折点。本综述探讨了SPECT和PET小动物成像系统在更好地理解健康和疾病状态下脑功能方面的作用。啮齿动物模型中的脑成像面临一系列挑战,因为其在当前成像的灵敏度和空间分辨率范围内发挥作用。讨论了几个主题,包括关于这两种技术优缺点的技术考量。此外,还讨论了一些为小动物核成像研究开发的放射性配体的应用。然后,我们特别关注阿片类、多巴胺能和大麻素受体成像,研究任务诱导的神经激活期间不同脑区代谢和神经递质活性的变化。最后,我们讨论当前状况并对小型实验动物中最具创新性的成像技术提供未来展望。这里讨论的挑战和解决方案可能有助于更好地理解脑功能,从而将临床前结果转化为临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa56/7759612/7bf1c95ffe44/fnbeh-14-596509-g0001.jpg

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