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In vivo regeneration of interspecies chimeric kidneys using a nephron progenitor cell replacement system

机译:使用nephron祖细胞替代系统体内种间嵌合肾脏的体内再生

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摘要

Kidney regeneration is expected to be a new alternative treatment to the currently limited treatments for chronic kidney disease. By transplanting exogeneous nephron progenitor cells (NPCs) into the metanephric mesenchyme of a xenogeneic foetus, we aimed to regenerate neo-kidneys that originate from transplanted NPCs. Previously, we generated a transgenic mouse model enabling drug-induced ablation of NPCs (the Six2-iDTR mouse). We demonstrated that eliminating existing native host NPCs allowed their 100% replacement with donor mouse or rat NPCs, which could generate neo-nephrons on a culture dish. To apply this method to humans in the future, we examined the possibility of the in vivo regeneration of nephrons between different species via NPC replacement. We injected NPCs-containing rat renal progenitor cells and diphtheria toxin below the renal capsule of E13.5 metanephroi (MNs) of Six2-iDTR mice; the injected MNs were then transplanted into recipient rats treated with immunosuppressants. Consequently, we successfully regenerated rat/mouse chimeric kidneys in recipient rats receiving the optimal immunosuppressive therapy. We revealed a functional connection between the neo-glomeruli and host vessels and proper neo-glomeruli filtration. In conclusion, we successfully regenerated interspecies kidneys in vivo that acquired a vascular system. This novel strategy may represent an effective method for human kidney regeneration.
机译:肾脏再生有望成为目前针对慢性肾脏疾病的有限治疗的新替代治疗。通过将外源性肾单位祖细胞(NPC)移植到异种胎儿的后肾间充质中,我们的目标是再生源自移植的NPC的新肾脏。以前,我们生成了一种转基因小鼠模型,该模型可实现药物诱导的NPC消融(Six2-iDTR小鼠)。我们证明,消除现有的天然宿主NPC可以将其100%替换为供体小鼠或大鼠NPC,这可能在培养皿上产生新肾单位。为了将来将这种方法应用于人类,我们研究了通过NPC替代在不同物种之间进行肾单位体内再生的可能性。我们在Six2-iDTR小鼠的E13.5后肾(MNs)的肾囊下方注射了含有NPC的大鼠肾祖细胞和白喉毒素。然后将注射的MNs移植到用免疫抑制剂治疗的受体大鼠中。因此,我们成功地在接受最佳免疫抑制疗法的受体大鼠中再生了大鼠/小鼠嵌合肾。我们揭示了新肾小球和宿主血管之间的功能连接和适当的新肾小球过滤。总之,我们成功地在体内再生了获得血管系统的种间肾脏。这种新颖的策略可能代表了人类肾脏再生的有效方法。

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