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长期培养海马神经前体细胞会改变其分化潜能,并选择非整倍体细胞。

Prolonged cultivation of hippocampal neural precursor cells shifts their differentiation potential and selects for aneuploid cells.

出版信息

Biol Chem. 2013 Dec;394(12):1623-36. doi: 10.1515/hsz-2013-0191.

DOI:10.1515/hsz-2013-0191
PMID:24084358
Abstract

Neural precursor cells (NPCs) are lineage-restricted neural stem cells with limited self-renewal, giving rise to a broad range of neural cell types such as neurons, astrocytes, and oligodendrocytes. Despite this developmental potential, the differentiation capacity of NPCs has been controversially discussed concerning the trespassing lineage boundaries, for instance resulting in hematopoietic competence. Assessing their in vitro plasticity, we isolated nestin+/Sox2+, NPCs from the adult murine hippocampus. In vitro-expanded adult NPCs were able to form neurospheres, self-renew, and differentiate into neuronal, astrocytic, and oligodendrocytic cells. Although NPCs cultivated in early passage efficiently gave rise to neuronal cells in a directed differentiation assay, extensively cultivated NPCs revealed reduced potential for ectodermal differentiation. We further observed successful differentiation of long-term cultured NPCs into osteogenic and adipogenic cell types, suggesting that NPCs underwent a fate switch during culture. NPCs cultivated for more than 12 passages were aneuploid (abnormal chromosome numbers such as 70 chromosomes). Furthermore, they showed growth factor-independent proliferation, a hallmark of tumorigenic transformation. In conclusion, our findings substantiate the lineage restriction of NPCs from adult mammalian hippocampus. Prolonged cultivation results, however, in enhanced differentiation potential, which may be attributed to transformation events leading to aneuploid cells.

摘要

神经前体细胞(NPCs)是谱系受限的神经干细胞,具有有限的自我更新能力,能分化为多种神经细胞类型,如神经元、星形胶质细胞和少突胶质细胞。尽管具有这种发育潜能,但 NPCs 的分化能力在跨越谱系边界时存在争议,例如导致造血能力。为了评估它们的体外可塑性,我们从成年小鼠海马体中分离出巢蛋白+/Sox2+的 NPCs。体外扩增的成年 NPCs 能够形成神经球,自我更新,并分化为神经元、星形胶质细胞和少突胶质细胞。虽然在定向分化实验中,培养早期的 NPC 能够有效地分化为神经元细胞,但大量培养的 NPC 显示出外胚层分化的潜力降低。我们进一步观察到长期培养的 NPC 成功分化为成骨细胞和脂肪细胞类型,这表明 NPC 在培养过程中发生了命运转变。培养超过 12 代的 NPC 是非整倍体(异常染色体数量,如 70 条染色体)。此外,它们表现出生长因子非依赖性增殖,这是肿瘤转化的一个标志。总之,我们的研究结果证实了成年哺乳动物海马体 NPC 的谱系限制。然而,长期培养导致分化潜能增强,这可能归因于导致非整倍体细胞的转化事件。

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