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Role of cerebrospinal fluid in differentiation of human dental pulp stem cells into neuron-like cells

机译:脑脊液在人牙牙髓干细胞分化中的作用进入神经元样细胞

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摘要

Human dental pulp stem cells (hDPSCs) could be differentiated into neuron like-cells under particular microenvironments. It has been reported that a wide range of factors, presented in cerebrospinal fluid (CSF), playing part in neuronal differentiation during embryonic stages, we herein introduce a novel culture media complex to differentiate hDPSCs into neuron-like cells. The hDPSCs were initially isolated and characterized. The CSF was prepared from the Cisterna magna of 19-day-old Wistar rat embryos, embryonic cerebrospinal fluid (E-CSF). The hDPSCs were treated by 5% E-CSF for 2 days, then neurospheres were cultured in DMEM/F12 supplemented with 10-6 μm retinoic acid (RA), glial-derived neurotrophic factor and brain-derived neurotrophic factor for 6 days. The cells which were cultured in basic culture medium were considered as control group. Morphology of differentiated cells as well as process elongation were examined by an inverted microscope. In addition, the neural differentiation markers (Nestin and MAP2) were studied employing immunocytochemistry. Neuronal-like processes appeared 8 days after treatment. Neural progenitor marker (Nestin) and a mature neural marker (MAP2) were expressed in treated group. Moreover Nissl bodies were found in the cytoplasm of treated group. Taking these together, we have designed a simple protocol for generating neuron-like cells using CSF from the hDPSCs, applicable for cell therapy in several neurodegenerative disorders including Alzheimer’s disease.
机译:人体牙髓干细胞(HDPSC)可以分化为特定的微环境下的神经元等细胞。据报道,在脑脊液(CSF)中呈现的广泛因素,在胚胎阶段中扮演神经元分化的部分,我们在此引入一种新的培养基复合物,将HDPSC分化为神经元样细胞。最初孤立和表征HDPSC。 CSF由19天历史的Wistar RAT胚胎,胚胎脑脊液(E-CSF)的Cisterna Magna制备。将HDPSC培养5%E-CSF处理2天,然后在补充10-6μM视黄酸(RA),神经胶质源性神经营养因子和脑衍生的神经营养因子的DMEM / F12中培养神经球体6天。将在碱性培养基中培养的细胞被认为是对照组。通过倒置显微镜检查分化细胞的形态以及过程伸长率。此外,研究了使用免疫细胞化学的神经分化标志物(Nestin和Map2)。类似的神经元的过程在治疗后8天出现。在治疗组中表达了神经祖素标记物(Nestin)和成熟神经标记物(MAP2)。此外,在治疗组的细胞质中发现了NISSL体。将这些聚集在一起,我们设计了一种简单的协议,用于使用来自HDPSC的CSF产生神经元样细胞,适用于包括阿尔茨海默病的几种神经变性障碍中的细胞疗法。

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