胚胎干细胞衍生的外胚间充质细胞用于牙齿工程。

S Acuña-Mendoza, S Martin, S Ribes, L Keller, C Chaussain, L Lebrin, H Lesot, A Poliard
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引用次数: 0

摘要

干细胞生物学和组织工程的最新进展允许考虑新疗法的可能发展,以补偿与创伤,病理或衰老相关的牙齿组织损失。通过模拟牙上皮细胞和来自神经嵴(NC)的外间充质细胞之间的重新联系来产生牙齿的可能性已经在小鼠身上得到证实。在寻找用于人体移植的细胞来源时,多能干细胞可能是一个很好的选择。因此,我们的研究侧重于从多能胚胎干细胞中获得能够促进牙齿组织形态发生的外充质细胞,当与称职的牙上皮细胞重新结合时。为此,开发了两种ES分化方案,使用环巴胺或FGF2和BMP4的组合,并测试了它们产生此类细胞的能力。采用定量RT-PCR对分化的胚胎干细胞进行鉴定。两种方法都能使细胞在10天内获得间充质样细胞形态。诱导后,细胞迅速失去多能基因的表达,同时依次激活典型的NC指示因子。然而,基因激活的动力学在两种方案之间有所不同。有趣的是,Twist是一个基因,其在NC中的表达与外切间充质命运的承诺相关,仅在FGF2和BMP4的影响下被激活。与能态上皮的再关联实验将允许测试分化的胚胎干细胞的成牙潜能。这些在小鼠系统中进行的实验应该允许确定获得牙源性人类细胞的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ES cells-derived ectomesenchymal cells for tooth engineering.

Recent progresses in stem cell biology and tissue engineering allow considering the possible development of new therapies for compensating the dental tissue losses associated with traumas, pathologies or ageing. The possibility of generating a tooth by mimicking development through reassociations between dental epithelial cells and ectomesenchymal cells derived from the neural crest (NC) has been demonstrated in the mouse. In the search of cell sources to be used for a human transfer, pluripotent stem cells could represent a good alternative. Our study thus focuses on obtaining, ectomesenchymal cells from pluripotent ES cells, capable of promoting tooth histomorphogenesis, when reassociated with a competent dental epithelium. To this end, two ES differentiation protocols, using cyclopamine or a combination of FGF2 and BMP4, have been developed and tested for their capacity to generate such cells. The differentiated ES cells were characterized by quantitative RT-PCR. Both protocols led the cells to acquire in 10 days a mesenchymal-like cell morphology. Rapidly after induction, the cells loose their expression of pluripotent genes while sequentially activating typical NC specifiers. However, the kinetics of gene activation differed between the 2 protocols. Interestingly, Twist, a gene whose expression in the NC is associated with a commitment towards an ectomesenchymal fate, is only activated under the influence of FGF2 and BMP4. Reassociation experiments with a competent epithelium will allow testing the odontogenic potential of the differentiated ES cells. These experiments performed in the mouse system should allow defining a strategy for obtaining odontogenic competent human cells.

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