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Mouse Parthenogenetic Embryonic Stem Cells with Biparental-Like Expression of Imprinted Genes Generate Cortical-Like Neurons That Integrate into the Injured Adult Cerebral Cortex

机译:小鼠单向生成的胚胎干细胞具有短印的印迹基因的逐步表达产生皮质状神经元,其整合到受伤的成人脑皮层中

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摘要

One strategy for stem cell-based therapy of the cerebral cortex involves the generation and transplantation of functional, histocompatible cortical-like neurons from embryonic stem cells (ESCs). Diploid parthenogenetic Pg-ESCs have recently emerged as a promising source of histocompatible ESC derivatives for organ regeneration but their utility for cerebral cortex therapy is unknown. A major concern with Pg-ESCs is genomic imprinting. In contrast with biparental Bp-ESCs derived from fertilized oocytes, Pg-ESCs harbor two maternal genomes but no sperm-derived genome. Pg-ESCs are therefore expected to have aberrant expression levels of maternally expressed (MEGs) and paternally expressed (PEGs) imprinted genes. Given the roles of imprinted genes in brain development, tissue homeostasis and cancer, their deregulation in Pg-ESCs might be incompatible with therapy. Here, we report that, unexpectedly, only one gene out of 7 MEGs and 12 PEGs was differentially expressed between Pg-ESCs and Bp-ESCs while 13 were differentially expressed between androgenetic Ag-ESCs and Bp-ESCs, indicating that Pg-ESCs but not Ag-ESCs, have a Bp-like imprinting compatible with therapy. In vitro, Pg-ESCs generated cortical-like progenitors and electrophysiologically active glutamatergic neurons that maintained the Bp-like expression levels for most imprinted genes. In vivo, Pg-ESCs participated to the cortical lineage in fetal chimeras. Finally, transplanted Pg-ESC derivatives integrated into the injured adult cortex and sent axonal projections in the host brain. In conclusion, mouse Pg-ESCs generate functional cortical-like neurons with Bp-like imprinting and their derivatives properly integrate into both the embryonic cortex and the injured adult cortex. Collectively, our data support the utility of Pg-ESCs for cortical therapy.
机译:脑皮质的干细胞疗法的一种策略涉及从胚胎干细胞(ESC)的功能,组织相容的皮质神经元的产生和移植。二倍体疗效PG-ESC最近被出现为用于器官再生的组织相容的ESC衍生物的有前途的来源,但它们对脑皮质治疗的效用是未知的。 PG-ESC的主要问题是基因组印记。相反,与源自受精卵母细胞的BP-ESC,PG-ESC涉及两种母体基因组,但没有精子衍生的基因组。因此,预期PG-ESC具有异常表达(MEGS)的异常表达水平,并且患者表达(PEGS)印迹基因。鉴于印迹基因在脑发育中的作用,组织稳态和癌症,它们在PG-ESC中的放松管制可能与治疗不相容。在这里,我们出乎意料地报告,在PG-ESC和BP-ESC之间仅差异表达了7兆和12个PEG中的一个基因,而13在andRogency AG-ESC和BP-ESC之间差异表达,表明PG-ESC但是不是AG-ESC,具有与疗法相容的BP样印迹。体外,PG-ESC生成皮质状祖细胞和电生理活性谷氨酸神经元,使得对大多数印迹基因保持的BP样表达水平。在体内,PG-ESC参加了胎儿嵌合体的皮质谱系。最后,将移植的PG-ESC衍生物整合到受伤的成人皮层中,并在宿主大脑中派出轴突突起。总之,小鼠PG-ESC产生具有BP样印迹的功能皮质状神经元,并且它们的衍生物适当地整合到胚胎皮质和受伤的成人皮层中。集体,我们的数据支持PG-ESC的效用进行皮质治疗。

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