Institute of Biomedicine of Seville (IBiS)/Virgen del Rocío University Hospital/CSIC/University of Seville, 41013 Seville, Spain.
Dis Model Mech. 2023 Aug 1;16(8). doi: 10.1242/dmm.050175. Epub 2023 Aug 29.
Neural tube defects (NTDs) are the second most common cause of congenital malformations and are often studied in animal models. Loop-tail (Lp) mice carry a mutation in the Vangl2 gene, a member of the Wnt-planar cell polarity pathway. In Vangl2+/Lp embryos, the mutation induces a failure in the completion of caudal neural tube closure, but only a small percentage of embryos develop open spina bifida. Here, we show that the majority of Vangl2+/Lp embryos developed caudal closed NTDs and presented cellular aggregates that may facilitate the sealing of these defects. The cellular aggregates expressed neural crest cell markers and, using these as a readout, we describe a systematic method to assess the severity of the neural tube dorsal fusion failure. We observed that this defect worsened in combination with other NTD mutants, Daam1 and Grhl3. Besides, we found that in Vangl2+/Lp embryos, these NTDs were resistant to maternal folic acid and inositol supplementation. Loop-tail mice provide a useful model for research on the molecular interactions involved in the development of open and closed NTDs and for the design of prevention strategies for these diseases.
神经管缺陷(NTDs)是先天性畸形的第二大常见原因,通常在动物模型中进行研究。环尾(Lp)小鼠携带 Wnt-平面细胞极性途径成员 Vangl2 基因的突变。在 Vangl2+/Lp 胚胎中,该突变导致尾部神经管闭合失败,但只有一小部分胚胎出现开放性脊柱裂。在这里,我们表明大多数 Vangl2+/Lp 胚胎发育出尾部闭合性 NTD,并出现可能有助于这些缺陷封闭的细胞聚集物。这些细胞聚集物表达神经嵴细胞标记物,并且我们使用这些作为读出物,描述了一种系统的方法来评估神经管背侧融合失败的严重程度。我们观察到,这种缺陷与其他 NTD 突变体 Daam1 和 Grhl3 结合时会恶化。此外,我们发现 Vangl2+/Lp 胚胎中的这些 NTD 对母体叶酸和肌醇补充具有抗性。环尾小鼠为研究开放和闭合性 NTD 发育过程中的分子相互作用以及为这些疾病设计预防策略提供了一个有用的模型。