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High-resolution imaging of normal anatomy and neural and adrenal malformations in mouse embryos using magnetic resonance microscopy

机译:使用磁共振显微镜对小鼠胚胎的正常解剖结构以及神经和肾上腺畸形进行高分辨率成像

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摘要

An efficient investigation of the effects of genetic or environmental manipulation on mouse development relies on the rapid and accurate screening of a substantial number of embryos for congenital malformations. Here we demonstrate that it is possible to examine normal organ development and identify malformations in mouse embryos by magnetic resonance microscopy in a substantially shorter time than by conventional histology. We imaged embryos in overnight runs of under 9 h, with an operator time of less than 1 h. In normal embryos we visualized the brain, spinal cord, ganglia, eyes, inner ear, pituitary, thyroid, thymus, trachea, bronchi, lungs, heart, kidneys, gonads, adrenals, oesophagus, stomach, intestines, spleen, liver and pancreas. Examination of the brain in embryos lacking the transcriptional coactivator Cited2 showed cerebellar and midbrain roof agenesis, in addition to exencephaly. In these embryos we were also able to detect agenesis of the adrenal gland. We confirmed all malformations by histological sectioning. Thus magnetic resonance microscopy can be used to rapidly identify developmental and organ malformations in mutant mouse embryos generated by transgenic techniques, in high-throughput mutagenesis screens, or in screens to identify teratogenic compounds and environmental factors contributing to developmental malformations.
机译:遗传或环境操作对小鼠发育的影响的有效研究依赖于对大量胚胎进行先天性畸形的快速准确筛查。在这里,我们证明可以通过比常规组织学更短的时间通过磁共振显微镜检查正常器官的发育并识别小鼠胚胎中的畸形。我们在不到9小时的通宵运行中对胚胎成像,操作员时间不到1小时。在正常胚胎中,我们可以看到大脑,脊髓,神经节,眼睛,内耳,垂体,甲状腺,胸腺,气管,支气管,肺,心脏,肾脏,性腺,肾上腺,食道,胃,肠,脾,肝和胰腺。缺乏转录共激活因子Cited2的胚胎的大脑检查显示,小脑和中脑屋顶发育不全。在这些胚胎中,我们还能够检测出肾上腺的发育不全。我们通过组织学切片证实了所有畸形。因此,磁共振显微镜可用于在高通量诱变筛选中或在筛选中识别通过转基因技术生成的突变小鼠胚胎中发育和器官畸形,以鉴定导致发育畸形的致畸化合物和环境因素。

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