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普通狨猴中CO化学敏感区域的全脑分析及延髓后外侧网状核和中缝髓核的鉴定()

Whole-brain analysis of CO chemosensitive regions and identification of the retrotrapezoid and medullary raphé nuclei in the common marmoset ().

作者信息

Turk Ariana Z, Millwater Marissa, SheikhBahaei Shahriar

机构信息

Neuron-Glia Signaling and Circuits Unit, National Institute of Neurological Disorders and Stroke (NINDS), National Institutes of Health (NIH), Bethesda, 20892 MD, USA.

出版信息

bioRxiv. 2023 Sep 28:2023.09.26.558361. doi: 10.1101/2023.09.26.558361.

Abstract

Respiratory chemosensitivity is an important mechanism by which the brain senses changes in blood partial pressure of CO (CO). It is proposed that special neurons (and astrocytes) in various brainstem regions play key roles as CO central respiratory chemosensors in rodents. Although common marmosets (), New-World non-human primates, show similar respiratory responses to elevated inspired CO as rodents, the chemosensitive regions in marmoset brain have not been defined yet. Here, we used c-fos immunostainings to identify brain-wide CO-activated brain regions in common marmosets. In addition, we mapped the location of the retrotrapezoid nucleus (RTN) and raphé nuclei in the marmoset brainstem based on colocalization of CO-induced c-fos immunoreactivity with Phox2b, and TPH immunostaining, respectively. Our data also indicated that, similar to rodents, marmoset RTN astrocytes express Phox2b and have complex processes that create a meshwork structure at the ventral surface of medulla. Our data highlight some cellular and structural regional similarities in brainstem of the common marmosets and rodents.

摘要

呼吸化学敏感性是大脑感知血液中二氧化碳(CO₂)分压变化的重要机制。有研究提出,啮齿动物脑干不同区域的特殊神经元(和星形胶质细胞)作为CO₂中枢呼吸化学感受器发挥关键作用。虽然普通狨猴(一种新世界非人灵长类动物)对吸入CO₂升高的呼吸反应与啮齿动物相似,但狨猴大脑中的化学敏感区域尚未明确。在此,我们使用c-fos免疫染色来识别普通狨猴全脑范围内CO₂激活的脑区。此外,我们分别基于CO₂诱导的c-fos免疫反应性与Phox2b的共定位以及TPH免疫染色,绘制了狨猴脑干中后梯形核(RTN)和中缝核的位置。我们的数据还表明,与啮齿动物相似,狨猴RTN星形胶质细胞表达Phox2b,并具有复杂的突起,在延髓腹侧表面形成网状结构。我们的数据突出了普通狨猴和啮齿动物脑干在细胞和结构区域上的一些相似性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c308/10659419/3735a1eaf6d5/nihpp-2023.09.26.558361v1-f0001.jpg

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