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The renal glomerulus and vasculature in 'Aggregation' chimeric mice.

机译:“聚集”嵌合小鼠的肾小球和脉管系统。

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In glomerular development, the glomerular epithelium is derived from the lower loop of the S-shaped renal vesicle. However, it is unclear whether the capillary endothelium is derived directly by vasculogenesis (e.g. differentiated directly from local metanephric mesenchyme) or whether they are derived by angiogenesis (i.e. derived from pre-existing vasculature in the metanephros). This question has been addressed in other laboratories using surgically created chimeric kidney model systems. In the present study, chimeric kidneys were developed by aggregating the cells from 4- to 8-cell embryos from Mus musculus with ones from Mus caroli and implanting the aggregated embryos into pseudopregnant hosts [Goldowitz D: Neuron 1989;3:705--713]. Species specific DNA clones were used in conjunction with in situ hybridization to identify the species origin of cells. Interspecies aggregate chimeras had varying proportions of renal cells derived from Mus caroli and Mus musculus; however, regions were identified in which the renal tubular and Bowman's capsule or parietal epithelia were from one species while vessel endothelium and cells in the interstitium were from the other species. In those regions, glomeruli always contained an admixture of cells from both species however; many of the glomerular endothelial cells appear to be from the same species as the vessel endothelium and interstitial cells. These findings support the hypothesis that angiogenesis may contribute cells that help form the glomerular capillary endothelium. Most intrarenal arteries contained cells from both species. However a few vessels were found in which the endothelium was derived from one species while the smooth muscle cells were from the other species. This finding suggests that intrarenal arterial development has two cells of origin: the endothelial tube develops and is surrounded by mesenchymal cells that form the tunica media. The aggregation chimeric mouse kidney may become a useful model system for studying in situ aspects of the complex processes involved in kidney development.
机译:在肾小球发育中,肾小球上皮源自S形肾小泡的下环。然而,尚不清楚毛细血管内皮是通过血管生成直接衍生的(例如直接从局部后肾间充质分化)还是它们是通过血管生成衍生的(即来自后肾中预先存在的脉管系统)。使用实验室创建的嵌合肾模型系统的其他实验室已经解决了这个问题。在本研究中,嵌合肾脏是通过将小家鼠的4至8细胞胚胎与毛果鼠的细胞进行聚集,并将聚集的胚胎植入假孕宿主中而开发的[Goldowitz D:Neuron 1989; 3:705--713 ]。将物种特异性的DNA克隆与原位杂交结合使用,以鉴定细胞的物种起源。种间聚集体嵌合体具有不同比例的来源于毛豆和小家鼠的肾细胞。然而,确定的区域中肾小管和鲍曼氏囊或顶叶上皮来自一个物种,而血管内皮和间质中的细胞则来自另一个物种。在那些地区,肾小球总是含有两种物种的细胞的混合物。许多肾小球内皮细胞似乎与血管内皮细胞和间质细胞来自同一物种。这些发现支持以下假设,即血管新生可以贡献有助于形成肾小球毛细血管内皮细胞的细胞。大部分肾内动脉都含有两种物种的细胞。然而,发现了一些血管,其中内皮来自一种物种,而平滑肌细胞则来自另一种物种。这一发现表明肾内动脉发育有两个起源的细胞:内皮管发育并被形成中膜介质的间充质细胞包围。聚集嵌合体小鼠肾脏可能成为研究肾脏发育所涉及的复杂过程的原位方面的有用模型系统。

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