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Morphology, Distribution and Phenotype of Polycystin Kidney Disease 2-like 1-Positive Cerebrospinal Fluid Contacting Neurons in The Brainstem of Adult Mice

机译:成年小鼠脑干中多囊藻肾病2样1阳性脑脊液接触神经元的形态,分布和表型

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摘要

The mammalian spinal cord and medulla oblongata harbor unique neurons that remain in contact with the cerebrospinal fluid (CSF-cNs). These neurons were shown recently to express a polycystin member of the TRP channels family (PKD2L1) that potentially acts as a chemo- or mechanoreceptor. Recent studies carried out in young rodents indicate that spinal CSF-cNs express immature neuronal markers that appear to persist even in adult cells. Nevertheless, little is known about the phenotype and morphological properties of medullar CSF-cNs. Using immunohistochemistry and confocal microscopy techniques on tissues obtained from three-month old PKD2L1:EGFP transgenic mice, we analyzed the morphology, distribution, localization and phenotype of PKD2L1+ CSF-cNs around the brainstem and cervical spinal cord central canal. We show that PKD2L1+ CSF-cNs are GABAergic neurons with a subependymal localization, projecting a dendrite towards the central canal and an axon-like process running through the parenchyma. These neurons display a primary cilium on the soma and the dendritic process appears to bear ciliary-like structures in contact with the CSF. PKD2L1+ CSF-cNs present a conserved morphology along the length of the medullospinal central canal with a change in their density, localization and dendritic length according to the rostro-caudal axis. At adult stages, PKD2L1+ medullar CSF-cNs appear to remain in an intermediate state of maturation since they still exhibit characteristics of neuronal immaturity (DCX positive, neurofilament 160 kDa negative) along with the expression of a marker representative of neuronal maturation (NeuN). In addition, PKD2L1+ CSF-cNs express Nkx6.1, a homeodomain protein that enables the differentiation of ventral progenitors into somatic motoneurons and interneurons. The present study provides valuable information on the cellular properties of this peculiar neuronal population that will be crucial for understanding the physiological role of CSF-cNs in mammals and their link with the stem cells contained in the region surrounding the medullospinal central canal.
机译:哺乳动物的脊髓和延髓具有独特的神经元,这些神经元保持与脑脊液(CSF-cNs)接触。最近显示这些神经元表达TRP通道家族(PKD2L1)的多囊蛋白成员,该成员可能起化学感受器或机械感受器的作用。在年轻的啮齿动物中进行的最新研究表明,脊柱CSF-cNs表达不成熟的神经元标记,甚至在成年细胞中也能持续存在。然而,关于髓样CSF-cNs的表型和形态学特性知之甚少。使用免疫组织化学和共聚焦显微镜技术对从三个月大的PKD2L1:EGFP转基因小鼠获得的组织进行分析,分析了脑干和颈脊髓周围PKD2L1 + CSF-cNs的形态,分布,定位和表型中央运河。我们显示,PKD2L1 + CSF-cNs是具有表皮下定位的GABA能神经元,向中心管投射树突,并穿过薄壁组织形成轴突样过程。这些神经元在体细胞上显示出初级纤毛,并且树突状过程似乎带有与CSF接触的纤毛状结构。 PKD2L1 + CSF-cNs在延髓脊髓中央管的长度方向上呈现保守的形态,其密度,定位和树突长度根据左尾轴改变。在成年阶段,PKD2L1 + 髓样CSF-cNs似乎仍处于成熟的中间状态,因为它们仍表现出神经元不成熟的特征(DCX阳性,神经丝160 kDa阴性)以及标志物的表达神经元成熟(NeuN)的代表。另外,PKD2L1 + CSF-cNs表达Nkx6.1,这是一个同源结构域蛋白,能够使腹侧祖细胞分化为体运动神经元和中间神经元。本研究提供了有关这种特殊的神经元群体的细胞特性的有价值的信息,这对于理解CSF-cNs在哺乳动物中的生理作用以及它们与髓脊髓中央管周围区域中包含的干细胞的联系至关重要。

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