首页> 外文期刊>Birth defects research, Part A. Clinical and molecular teratology >Experimental induction of palate shelf elevation in glutamate decarboxylase 67-deficient mice with cleft palate due to vertically oriented palatal shelf.
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Experimental induction of palate shelf elevation in glutamate decarboxylase 67-deficient mice with cleft palate due to vertically oriented palatal shelf.

机译:实验性诱导谷氨酸脱羧酶67缺陷的c裂小鼠的pa架升高,原因是vertically架垂直放置。

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BACKGROUND: Gamma-aminobutyric acid is an inhibitory neurotransmitter, synthesized by two isoforms of glutamate decarboxylase (GAD), GAD65 and -67. Unexpectedly, inactivation of GAD67 induces cleft palate in mice. Reduction of spontaneous tongue movement resulting from decreased motor nerve activity has been related to the development of cleft palate in GAD67(-/-) fetuses. In the present study, development of cleft palate was examined histologically and manipulated with culture of the maxilla and partial resection of fetal tongue. METHODS: GAD67(-/-) mice and their littermates were used. Histological examination and immunohistochemistry were performed conventionally. Organ culture of the maxilla was carried out as reported previously. Fetuses were maintained alive under anesthesia and tips of their tongues were resected. RESULTS: Elevation of palatal shelves, the second step of palate formation, was not observed in GAD67(-/-) mice. In wild-type mice, GAD67 and gamma-aminobutyric acid were not expressedin the palatal shelves, except in the medial edge epithelium. During 2 days of culture of maxillae dissected from E13.5-E14.0 GAD67(-/-) fetuses, elevation and fusion of the palatal shelves were induced. When E13.5-15.5 mutant fetuses underwent partial tongue resection, the palatal shelves became elevated within 30 min. CONCLUSIONS: These results suggest that the potential for palate formation is maintained in the palatal shelves of GAD67(-/-) fetuses, but it is obstructed by other, probably neural, factors, resulting in cleft palate.
机译:背景:γ-氨基丁酸是一种抑制性神经递质,由谷氨酸脱羧酶(GAD)的两种亚型GAD65和-67合成。出乎意料的是,GAD67的失活会诱发小鼠c裂。运动神经活动减少导致的自发舌头运动减少与GAD67(-/-)胎儿of裂的发展有关。在本研究中,对pa裂的发展进行了组织学检查,并通过上颌骨培养和胎舌部分切除术对其进行了控制。方法:使用GAD67(-/-)小鼠及其同窝仔。常规进行组织学检查和免疫组织化学。如先前报道进行上颌的器官培养。在麻醉下使胎儿存活,并切除其舌尖。结果:GAD67(-/-)小鼠未观察到of架的升高,这是of形成的第二步。在野生型小鼠中,除了在内侧边缘上皮中,GAD67和γ-氨基丁酸没有在shelves架上表达。在从E13.5-E14.0 GAD67(-/-)胎儿解剖的上颌骨培养2天期间,引起shelves架的抬高和融合。当E13.5-15.5突变胎儿接受部分舌切除术时,the架在30分钟内升高。结论:这些结果表明GAD67(-/-)胎儿的shelves架中保持了pa形成的潜能,但受其他可能是神经因素的阻碍,导致c裂。

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