Molecular and morphological characterization of neural tube defects in embryos of diabetic Swiss Albino mice.

神经管 胚胎 生物 奥利格2 脊髓 神经上皮细胞 胚胎发生 神经褶 神经细胞 细胞生物学 解剖 神经板 神经干细胞 神经科学 中枢神经系统 细胞 少突胶质细胞 髓鞘 遗传学 干细胞
作者
Wan Ting Loh,S. Thameem Dheen,Boran Jiang,Dinesh Kumar Srinivasan,Samuel Sam Wah Tay
出处
期刊:Histology and Histopathology [University of Murcia]
卷期号:26 (8): 965-78 被引量:5
标识
DOI:10.14670/hh-26.965
摘要

Embryos from diabetic mice exhibit several forms of neural tube defects, including non-closure of the neural tube. In the present study, embryos collected at embryonic day 11.5 from diabetic pregnancies displayed open neural tube with architectural disruption of the surrounding tissues. The percentage of proliferating cells was found to be increased in the dorsal and ventral domains of the spinal neural tube of embryos from diabetic mice, indicating a defect in the proliferation index. We have analyzed the development of various cell types, including motoneurons, interneurons, oligodendrocytes and migrating neurons, as well as radial glial cells in the open neural tube using specific molecular markers. Immunofluorescence results revealed a significantly reduced number of Pax2+ interneurons and increased number of Isl-1+ motoneurons, as well as Olig2+ oligodendrocytes in the neural tube of embryos from diabetic mice as compared to controls. In addition, these embryos exhibited a decreased number of doublecortin positive migrating neurons and Glast/Blbp positive radial glial cells with shortened processes in the neural tube. Expression levels of several developmental control genes involved in the generation of different neuronal cell types (such as Shh, Ngn, Ngn2, Ascl1) were also found to be altered in the neural tube of embryos from diabetic mice.Overall, the open neural tube in embryos of diabetic mice exhibits defects in the specification of different cell types, including motoneurons and interneurons, as well as glial cells along the dorsoventral axis of the developing spinal cord. Although these defects are associated with altered expression of several development control genes, the exact mechanisms by which maternal diabetes contributes to these changes remain to be investigated.
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