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cFOS作为海马结构中活动成熟的生物标志物。

cFOS as a biomarker of activity maturation in the hippocampal formation.

作者信息

Pompeiano Maria, Colonnese Matthew T

机构信息

Department of Pharmacology and Physiology, The George Washington University, Washington, DC, United States.

Departamento de Bioingeniería, Universidad Carlos III de Madrid, Madrid, Spain.

出版信息

Front Neurosci. 2023 Jul 13;17:929461. doi: 10.3389/fnins.2023.929461. eCollection 2023.

Abstract

We explored the potential for cFOS expression as a marker of functional development of "resting-state" waking activity in the extended network of the hippocampus and entorhinal cortex. We examined sleeping and awake mice at (P)ostnatal days 5, 9, 13, and 17 as well as in adulthood. We find that cFOS expression is state-dependent even at 5 days old, with reliable staining occurring only in the awake mice. Even during waking, cFOS expression was rare and weak at P5. The septal nuclei, entorhinal cortex layer (L)2, and anterodorsal thalamus were exceptional in that they had robust cFOS expression at P5 that was similar to or greater than in adulthood. Significant P5 expression was also observed in the dentate gyrus, entorhinal cortex L6, postsubiculum L4-6, ventral subiculum, supramammillary nucleus, and posterior hypothalamic nucleus. The expression in these regions grew stronger with age, and the expression in new regions was added progressively at P9 and P13 by which point the overall expression pattern in many regions was qualitatively similar to the adult. Six regions-CA1, dorsal subiculum, postsubiculum L2-3, reuniens nucleus, and perirhinal and postrhinal cortices-were very late developing, mostly achieving adult levels only after P17. Our findings support a number of developmental principles. First, early spontaneous activity patterns induced by muscle twitches during sleep do not induce robust cFOS expression in the extended hippocampal network. Second, the development of cFOS expression follows the progressive activation along the trisynaptic circuit, rather than birth date or cellular maturation. Third, we reveal components of the egocentric head-direction and theta-rhythm circuits as the earliest cFOS active circuits in the forebrain. Our results suggest that cFOS staining may provide a reliable and sensitive biomarker for hippocampal formation activity development, particularly in regard to the attainment of a normal waking state and synchronizing rhythms such as theta and gamma.

摘要

我们探究了cFOS表达作为海马体和内嗅皮质扩展网络中“静息态”清醒活动功能发育标志物的潜力。我们在出生后第5、9、13和17天以及成年期检查了睡眠和清醒的小鼠。我们发现,即使在5天大时,cFOS表达也依赖于状态,只有清醒小鼠中才会出现可靠的染色。即使在清醒状态下,出生后第5天的cFOS表达也很少且微弱。隔核、内嗅皮质第2层和丘脑前背核是例外,它们在出生后第5天有强烈的cFOS表达,与成年期相似或更强。在齿状回、内嗅皮质第6层、后下托第4 - 6层、腹侧下托、乳头体上核和下丘脑后核也观察到了显著的出生后第5天表达。这些区域的表达随年龄增长而增强,在出生后第9天和第13天逐渐有新区域开始表达,此时许多区域的整体表达模式在质量上与成年期相似。六个区域——CA1、背侧下托、后下托第2 - 3层、 reuniens核、梨状前皮质和梨状后皮质——发育非常晚,大多在出生后第17天之后才达到成年水平。我们的研究结果支持了一些发育原则。首先,睡眠期间肌肉抽搐诱导的早期自发活动模式不会在扩展的海马网络中诱导强烈的cFOS表达。其次,cFOS表达的发育遵循沿三突触回路的渐进激活,而不是出生日期或细胞成熟。第三,我们揭示了以自我为中心的头部方向和θ节律回路的组成部分是前脑中最早的cFOS活跃回路。我们的结果表明,cFOS染色可能为海马结构活动发育提供一种可靠且敏感的生物标志物,特别是在达到正常清醒状态以及同步节律(如θ和γ节律)方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c53/10374841/29e7477e4362/fnins-17-929461-g0001.jpg

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