Institute of Biology and Ecology, Faculty of Science, P.J. Šafárik University, Moyzes Street 11, Košice, Slovak Republic.
Acta Histochem. 2011 Feb;113(2):156-62. doi: 10.1016/j.acthis.2009.09.007. Epub 2010 Jan 15.
Despite extensive investigations of gliogenesis, the time of origin of ependymal cells in the spinal cord has not yet been fully elucidated. Using a single dose of 5-bromo-2-deoxyuridine combined with various survival times we monitored: mitotic activity (short survival time), the presence of newly formed cells in the ventricular zone (intermediate survival time) and the formation of ependymal cells (long survival time) during the late embryonic and early postnatal development in the ventricular zone of the spinal cord of rats. In the period of study it was found that the ependymal cells populated this region in two waves. Most of the ependymal cells originated around embryonic day 18 and then between postnatal days 8 and 15. In addition, it was observed that in the ventricular zone of the spinal cord, proliferation and production of ependymal cells continues at the slower rate at least until day 36 of postnatal development. Elucidation of the relationship between progenitors in the embryonic ventricular zone and the relative quiescent ependymal lining of the central canal in adulthood could be important in the search for the adult neural stem cell niche.
尽管对神经发生进行了广泛的研究,但脊髓室管膜细胞的起源时间尚未完全阐明。我们使用单次剂量的 5-溴-2-脱氧尿苷结合不同的存活时间来监测:有丝分裂活性(短存活时间)、室管膜区中新形成的细胞的存在(中间存活时间)以及在大鼠脊髓室管膜区的晚期胚胎和早期新生期间形成的室管膜细胞(长存活时间)。在研究期间,发现在两个波次中有室管膜细胞填充这个区域。大多数室管膜细胞起源于胚胎第 18 天左右,然后在出生后第 8 天至 15 天之间。此外,还观察到在脊髓室管膜区,增殖和室管膜细胞的产生以较慢的速度持续进行,至少在出生后 36 天的发育过程中如此。阐明胚胎室管膜区中的祖细胞与成年期相对静止的中央管室管膜衬里之间的关系,对于寻找成年神经干细胞龛可能很重要。