A simple and reliable method for claustrum localization across age in mice.

IF 3.3 3区 医学 Q2 NEUROSCIENCES
Tarek Shaker, Gwyneth J Dagpa, Vanessa Cattaud, Brian A Marriott, Mariam Sultan, Mohammed Almokdad, Jesse Jackson
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引用次数: 0

Abstract

The anatomical organization of the rodent claustrum remains obscure due to lack of clear borders that distinguish it from neighboring forebrain structures. Defining what constitutes the claustrum is imperative for elucidating its functions. Methods based on gene/protein expression or transgenic mice have been used to spatially outline the claustrum but often report incomplete labeling and/or lack of specificity during certain neurodevelopmental timepoints. To reliably identify claustrum projection cells in mice, we propose a simple immunolabelling method that juxtaposes the expression pattern of claustrum-enriched and cortical-enriched markers. We determined that claustrum cells immunoreactive for the claustrum-enriched markers Nurr1 and Nr2f2 are devoid of the cortical marker Tle4, which allowed us to differentiate the claustrum from adjoining cortical cells. Using retrograde tracing, we verified that nearly all claustrum projection neurons lack Tle4 but expressed Nurr1/Nr2f2 markers to different degrees. At neonatal stages between 7 and 21 days, claustrum projection neurons were identified by their Nurr1-postive/Tle4-negative expression profile, a time-period when other immunolabelling techniques used to localize the claustrum in adult mice are ineffective. Finally, exposure to environmental novelty enhanced the expression of the neuronal activation marker c-Fos in the claustrum region. Notably, c-Fos labeling was mainly restricted to Nurr1-positive cells and nearly absent from Tle4-positive cells, thus corroborating previous work reporting novelty-induced claustrum activation. Taken together, this method will aid in studying the claustrum during postnatal development and may improve histological and functional studies where other approaches are not amenable.

一种简单可靠的小鼠跨年龄耳廓定位方法。
啮齿类动物的鼓室解剖结构仍然模糊不清,原因是缺乏将其与邻近前脑结构区分开来的清晰边界。要阐明其功能,就必须确定什么构成了鼓室。基于基因/蛋白表达或转基因小鼠的方法已被用于勾画大脑鼓室的空间轮廓,但在某些神经发育时间点,这些方法往往标记不全和/或缺乏特异性。为了可靠地识别小鼠的鼓室投射细胞,我们提出了一种简单的免疫标记方法,将富含鼓室的标记物和富含皮质的标记物的表达模式并列。我们确定,对富含鼓室标记的 Nurr1 和 Nr2f2 有免疫反应的鼓室细胞没有皮质标记 Tle4,这使我们能够将鼓室与邻近的皮质细胞区分开来。通过逆行追踪,我们证实几乎所有的鼓室投射神经元都缺乏Tle4,但在不同程度上表达Nurr1/Nr2f2标记。在7到21天的新生儿期,我们通过Nurr1阳性/Tle4阴性的表达谱鉴定出了鼓室投射神经元,而在这一时期,其他用于定位成年小鼠鼓室的免疫标记技术并不起作用。最后,暴露于新奇的环境会增强鼓室区域神经元活化标记 c-Fos 的表达。值得注意的是,c-Fos标记主要局限于Nurr1阳性细胞,而Tle4阳性细胞几乎不表达,从而证实了之前关于新奇事物诱导的鼓室激活的研究。总之,这种方法将有助于研究出生后发育过程中的鼓室,并可在其他方法不适用的情况下改进组织学和功能研究。
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来源期刊
Molecular Brain
Molecular Brain NEUROSCIENCES-
CiteScore
7.30
自引率
0.00%
发文量
97
审稿时长
>12 weeks
期刊介绍: Molecular Brain is an open access, peer-reviewed journal that considers manuscripts on all aspects of studies on the nervous system at the molecular, cellular, and systems level providing a forum for scientists to communicate their findings. Molecular brain research is a rapidly expanding research field in which integrative approaches at the genetic, molecular, cellular and synaptic levels yield key information about the physiological and pathological brain. These studies involve the use of a wide range of modern techniques in molecular biology, genomics, proteomics, imaging and electrophysiology.
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