Developmental Dynamics of the Rabbit Cerebellum During Fetal Maturation With Insights into the Role of Radial Glia in Neuronal Development.

IF 2.9 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Manal T Hussein, Norhan M Kotb, Doaa M Mokhtar, Marwa M Hussein
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Abstract

This study examines the development of the rabbit cerebellum from the 10th day postconception to full-term fetal age, with a particular focus on the role of radial glial cells in the differentiation of cerebellar neurons. A total of 35 embryonic samples were meticulously dissected and microscopically analyzed. On embryonic day (ED) 12, cerebellar primordia, consisting of the ventricular neuroepithelium and rhombic lip, were observed. By ED16, significant neuronal cell proliferation and migration in both the radial and tangential directions were noted. On ED 20, lamination processes began, forming the external granular layer (EGL) and Purkinje cell plate (PCP) with the support of radial glial cells. By ED 25, the cerebellar cortex had developed three distinct layers: the EGL, PCP, and the prospective molecular layer (PML), with radial glial cells localized in the PCP. Differentiation continued, and upon ED30, a new cortical layer, the internal granular layer, was evident. Additionally, the gradual replacement of nestin by glial fibrillary acidic protein marked the differentiation of radial glia into Bergmann glia at ED 25 and ED 30. β-III tubulin, a marker of differentiated neurons, was detected in the inner layer of EGL and PCP during these stages. In conclusion, this study highlights the pivotal role of radial glial cells in the layered organization and neuronal differentiation of the developing rabbit cerebellum. The developmental trajectory observed provides valuable insights into cerebellar morphogenesis and supports the relevance of the rabbit model for exploring neurodevelopmental processes.

兔胎儿成熟过程中小脑的发育动态及径向胶质细胞在神经元发育中的作用。
本研究考察了兔小脑从怀孕后第10天到足月胎龄的发育情况,特别关注放射状胶质细胞在小脑神经元分化中的作用。共35个胚胎样本被精心解剖和显微分析。胚胎第12天,观察到由脑室神经上皮和菱形唇组成的小脑原基。通过ED16,可以观察到神经元细胞在径向和切向上的增殖和迁移。在ED 20,层压过程开始,形成外颗粒层(EGL)和浦肯野细胞板(PCP),支持放射状胶质细胞。到ED 25时,小脑皮层已经形成了三个不同的层:EGL、PCP和前瞻性分子层(PML),放射状胶质细胞定位于PCP。分化继续,在ED30时,一个新的皮质层,即内颗粒层明显出现。此外,巢蛋白逐渐被胶质纤维酸性蛋白取代,标志着放射状胶质细胞在ED 25和ED 30分化为Bergmann胶质细胞。在这两个阶段,EGL和PCP内层检测到β-III微管蛋白,这是神经元分化的标志。综上所述,本研究强调了放射状胶质细胞在兔小脑分层组织和神经元分化中的关键作用。观察到的发育轨迹为小脑形态发生提供了有价值的见解,并支持兔模型与探索神经发育过程的相关性。
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来源期刊
Microscopy and Microanalysis
Microscopy and Microanalysis 工程技术-材料科学:综合
CiteScore
1.10
自引率
10.70%
发文量
1391
审稿时长
6 months
期刊介绍: Microscopy and Microanalysis publishes original research papers in the fields of microscopy, imaging, and compositional analysis. This distinguished international forum is intended for microscopists in both biology and materials science. The journal provides significant articles that describe new and existing techniques and instrumentation, as well as the applications of these to the imaging and analysis of microstructure. Microscopy and Microanalysis also includes review articles, letters to the editor, and book reviews.
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