首页> 外文期刊>Biotechnology Letters >Pharmacological Notch pathway inhibition leads to cell cycle arrest and stimulates ascl1 and neurogenin2 genes expression in dental pulp stem cells-derived neurospheres
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Pharmacological Notch pathway inhibition leads to cell cycle arrest and stimulates ascl1 and neurogenin2 genes expression in dental pulp stem cells-derived neurospheres

机译:药理学缺口途径抑制导致细胞周期停滞,刺激ASCL1和神经源性2基因在牙髓干细胞衍生的神经球中的表达

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ObjectiveHuman dental pulp-derived stem cells (hDPSCs) are becoming an attractive source for cell-based neurorestorative therapies. As such, it is important to understand the molecular mechanisms that regulate the differentiation of hDPSCs toward the neuronal fate. Notch signaling plays key roles in neural stem/progenitor cells (NS/PCs) maintenance and prevention of their differentiation. The aim of this study was to address the effects of Notch signaling inhibition on neurosphere formation of hDPSCs and neuronal differentiation of hDPSCs-neurospheres.ResultshDPSCs were isolated from third molar teeth. The cultivated hDPSCs highly expressed CD90 and CD44 and minimally presented CD34 and CD45 surface markers. The osteo/adipogenic differentiation of hDPSCs was documented. hDPSCs were cultured in neural induction medium and N-[N-(3,5-difluorophenacetyl-l-alanyl)]-Sphenylglycine t-butyl ester (DAPT) was applied to impede Notch signaling during transformation into spheres or on the formed neurospheres. Our results showed that the size and number of neurospheres decreased and the expression profile of nestin, sox1 and pax6 genes reduced provided DAPT. Treatment of the formed neurospheres with DAPT resulted in the cleaved Notch1 reduction, G0/G1 arrest and a decline in L-lactate production. DAPT significantly reduced hes1 and hey1 genes, while ascl1 and neurogenin2 expressions augmented. The number of MAP2 positive cells improved in the DAPT-treated group.ConclusionsOur findings demonstrated the Notch activity in hDPSCs-neurospheres. DAPT treatment positively regulated proneural genes expression and increased neuronal-like differentiation.
机译:Objecthuman牙髓衍生的干细胞(HDPSC)正在成为基于细胞的神经医生疗法的有吸引力的来源。因此,了解调节HDPSC分化对神经元命运的分子机制非常重要。 Notch信号传导在神经茎/祖细胞(NS / PC)维护和预防其分化中起着关键作用。本研究的目的是解决Notch信号传导抑制对HDPSC的神经圈形成的影响,HDPSCS-Neuropheres的神经元分化。从第三磨牙牙齿中分离出疗效。培养的HDPSCS高表达CD90和CD44,最小呈现CD34和CD45表面标志物。记录了HDPSCS的骨科/脂肪发生分化。 HDPSC在神经感应培养基中培养,并施加N- [N-(3,5-二氟苯乙酰基-L-丙烷基)] - 硫基甘氨酸叔丁酯(DAPT),以在转化到球体中或形成的神经球期间阻止凹口信号传导。我们的研究结果表明,Nestin,Nestin,Sox1和Pax6基因的表达谱减少了DAPT的大小和数量。用DAPT处理的形成神经球导致切割的Notch1减少,G0 / G1停滞和L-乳酸盐产生的下降。 DAPT显着减少了HES1和HEY1基因,而ASCL1和神经原因2表达增强。 DAPT治疗组中MAP2阳性细胞的数量改善。结合调查结果证明了HDPSCS-Neuropheres中的陷波活性。 DAPT治疗积极地调节肺部的肺部表达和增加的神经元样分化。

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