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Stem cells and neural signalling: the case of neoblast recruitment and plasticity in low dose X-ray treated planarians

机译:干细胞和神经信号:低剂量X射线治疗的涡虫的新生细胞募集和可塑性的情况

摘要

Planarians (Platyhelminthes) possess an abundant population of adult stem cells, the neoblasts, capable to give rise to both somatic and germ cells. Although neoblasts share similar morphological features, several pieces of evidence suggest that they constitute a heterogeneous population of cells with distinct ultrastructural and molecular features. We found that in planarians treated with low X-ray doses (5 Gy), only a few neoblasts survive. Among these cells, those located close to the nervous system activate an intense proliferation program and migrate to reconstitute the whole complex neoblast population. This phenomenon is inhibited by the substance P receptor antagonist spantide, and accompanied by the up-regulation of a number of genes implicated in neuronal signalling and plasticity, suggesting that signals of neural origin modulate neoblast proliferation and/or migration. Here, we review these findings and the literature available on the influence of the nervous system on stem cell activity, both in planarians and vertebrates, and we propose 5 Gy-treated planarians as a unique model system to study the influence of neural signalling on stem cell biology
机译:扁平虫(Platyhelminthes)拥有大量成年干细胞,即成神经细胞,能够同时产生体细胞和生殖细胞。尽管成胚细胞具有相似的形态学特征,但一些证据表明,它们构成了具有不同超微结构和分子特征的异质细胞群。我们发现,在接受低X射线剂量(5 Gy)治疗的涡虫中,只有少数成瘤细胞存活。在这些细胞中,靠近神经系统的细胞会激活强烈的增殖程序,并迁移以重建整个复杂的成神经细胞种群。这种现象被物质P受体拮抗剂spantide抑制,并伴随着许多与神经元信号传导和可塑性有关的基因的上调,表明神经起源的信号调节了新生细胞的增殖和/或迁移。在这里,我们回顾这些发现以及有关神经系统对刨刀和脊椎动物中干细胞活性的影响的文献,并提出了5种经Gy处理的刨刀作为独特的模型系统来研究神经信号对茎的影响细胞生物学

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