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Neuronal Transdifferentiation Potential of Human Mesenchymal Stem Cells from Neonatal and Adult Sources by a Small Molecule Cocktail

机译:小分子鸡尾酒从新生儿和成人来源的人间充质干细胞的神经元转分化潜能。

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摘要

Human mesenchymal stem cells (MSCs) are good candidates for brain cell replacement strategies and have already been used as adjuvant treatments in neurological disorders. MSCs can be obtained from many different sources, and the present study compares the potential of neuronal transdifferentiation in MSCs from adult and neonatal sources (Wharton's jelly (WhJ), dental pulp (DP), periodontal ligament (PDL), gingival tissue (GT), dermis (SK), placenta (PLAC), and umbilical cord blood (UCB)) with a protocol previously tested in bone marrow- (BM-) MSCs consisting of a cocktail of six small molecules: I-BET151, CHIR99021, forskolin, RepSox, Y-27632, and dbcAMP (ICFRYA). Neuronal morphology and the presence of cells positive for neuronal markers (TUJ1 and MAP2) were considered attributes of neuronal induction. The ICFRYA cocktail did not induce neuronal features in WhJ-MSCs, and these features were only partial in the MSCs from dental tissues, SK-MSCs, and PLAC-MSCs. The best response was found in UCB-MSCs, which was comparable to the response of BM-MSCs. The addition of neurotrophic factors to the ICFRYA cocktail significantly increased the number of cells with complex neuron-like morphology and increased the number of cells positive for mature neuronal markers in BM- and UCB-MSCs. The neuronal cells generated from UCB-MSCs and BM-MSCs showed increased reactivity of the neuronal genes TUJ1, MAP2, NF-H, NCAM, ND1, TAU, ENO2, GABA, and NeuN as well as down- and upregulation of MSC and neuronal genes, respectively. The present study showed marked differences between the MSCs from different sources in response to the transdifferentiation protocol used here. These results may contribute to identifying the best source of MSCs for potential cell replacement therapies.
机译:人间充质干细胞(MSCs)是脑细胞替代策略的良好候选者,已经被用作神经系统疾病的辅助治疗。 MSC可以从许多不同来源获得,并且本研究比较了成年和新生儿来源(沃顿胶冻(WhJ),牙髓(DP),牙周膜(PDL),牙龈组织(GT))中MSC中神经元转分化的潜力。 ,真皮(SK),胎盘(PLAC)和脐带血(UCB)),且之前已在骨髓(BM-)MSC中测试了一种方案,该方案由六种小分子混合物组成:I-BET151,CHIR99021,毛喉素, RepSox,Y-27632和dbcAMP(ICFRYA)。神经元形态和神经元标记(TUJ1和MAP2)阳性细胞的存在被认为是神经元诱导的属性。 ICFRYA鸡尾酒不会在WhJ-MSC中诱导神经元特征,而这些特征仅部分存在于来自牙齿组织,SK-MSC和PLAC-MSC的MSC中。在UCB-MSC中发现了最佳响应,与BM-MSC的响应相当。向ICFRYA混合物中添加神经营养因子可显着增加具有复杂神经元样形态的细胞数量,并增加BM-和UCB-MSC中成熟神经元标记阳性的细胞数量。由UCB-MSC和BM-MSC产生的神经元细胞显示神经元基因TUJ1,MAP2,NF-H,NCAM,ND1,TAU,ENO2,GABA和NeuN的反应性增强,以及MSC和神经元的上调和下调基因分别。本研究表明,来自不同来源的MSC之间存在显着差异,以响应此处使用的转分化方案。这些结果可能有助于确定用于潜在的细胞替代疗法的MSC的最佳来源。

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