首页> 外文期刊>Acta Histochemica: Zeitschrift fur Histologische Topochemie >Enigmatic cerebrospinal fluid-contacting neurons arise even after the termination of neurogenesis in the rat spinal cord during embryonic development and retain their immature-like characteristics until adulthood
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Enigmatic cerebrospinal fluid-contacting neurons arise even after the termination of neurogenesis in the rat spinal cord during embryonic development and retain their immature-like characteristics until adulthood

机译:甚至在胚胎发育过程中大鼠脊髓中的神经发生终止后,神秘的脑脊液接触神经元仍会出现,并保持其未成熟的特征直至成年。

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摘要

Despite the abundance of cerebrospinal fluid-contacting neurons (CSF-cNs) lining the central canal of the spinal cord of mammals, little information is known regarding the phenotype and fate of these cells during development and in adulthood. Using immunofluorescence of spinal cord tissue of rats from the first postnatal day (P1) until the end of the 5th postnatal week (P36), we observed that these neurons show both immature (doublecortin+, β-III-tubulin+, neurofilament 200. kDa-) and more mature (weak NeuN+, P2X2+, GAD65+) characteristics during the first postnatal weeks. Because of the gradually decreasing number of CSF-cNs in the central canal lining during development, we were also interested in the migration potential of these cells. However, the assessment of the number of CSF-cNs in the lining of the central canal during postnatal development revealed that this decline is most likely associated with the growth of the spinal cord. Lastly, to reveal the birth date of CSF-cNs, we performed 5-bromo-2-deoxyuridine administration and colocalization analyses. We found that production of these cells appears from day 12 of embryonic development (E12) until E22. The vast majority of CSF-contacting neurons arise on E14 and E15. In contrast with other types of spinal neurons, the production of CSF-cNs is not restricted to a particular neuroepithelial region and occurs even after what is thought to be the termination of neurogenesis.
机译:尽管在哺乳动物的脊髓中央管内有大量的脑脊液接触神经元(CSF-cNs),但关于这些细胞在发育过程中和成年后的表型和命运的信息知之甚少。使用从出生后第一天(P1)到出生后第五周(P36)结束时大鼠脊髓组织的免疫荧光,我们观察到这些神经元均显示出未成熟的(双皮质素+,β-III-微管蛋白+,神经丝200。kDa- ),并且在出生后的头几周内具有更成熟的特征(NeuN +,P2X2 +,GAD65 +较弱)。由于在发育过程中中央管壁中CSF-cNs的数量逐渐减少,因此我们也对这些细胞的迁移潜力感兴趣。但是,对产后发育过程中中央管内层CSF-cNs数量的评估显示,这种下降很可能与脊髓的生长有关。最后,为了揭示CSF-cNs的出生日期,我们进行了5-溴-2-脱氧尿苷给药和共定位分析。我们发现这些细胞的产生从胚胎发育的第12天(E12)到E22。绝大多数CSF接触神经元出现在E14和E15上。与其他类型的脊髓神经元相反,CSF-cNs的产生不限于特定的神经上皮区域,甚至在认为终止神经发生后仍会发生。

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