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首页> 外文期刊>Stem cells and development >Neurogenic Maturation of Human Dental Pulp Stem Cells Following Neurosphere Generation Induces Morphological and Electrophysiological Characteristics of Functional Neurons
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Neurogenic Maturation of Human Dental Pulp Stem Cells Following Neurosphere Generation Induces Morphological and Electrophysiological Characteristics of Functional Neurons

机译:人类牙髓干细胞继神经球生成后的神经源性成熟诱导功能神经元的形态和电生理特征

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摘要

Cell-based therapies are emerging as an alternative treatment option to promote functional recovery in patients suffering from neurological disorders, which are the major cause of death and permanent disability. The present study aimed to differentiate human dental pulp stem cells (hDPSCs) toward functionally active neuronal cells in vitro. hDPSCs were subjected to a two-step protocol. First, neuronal induction was acquired through the formation of neurospheres, followed by neuronal maturation, based on cAMP and neurotrophin-3 (NT-3) signaling. At the ultrastructural level, it was shown that the intra-spheral microenvironment promoted intercellular communication. hDPSCs grew out of the neurospheres in vitro and established a neurogenic differentiated hDPSC culture (d-hDPSCs) upon cAMP and NT-3 signaling. d-hDPSCs were characterized by the increased expression of neuronal markers such as neuronal nuclei, microtubule-associated protein 2, neural cell adhesion molecule, growth-associated protein 43, synapsin I, and synaptophysin compared with nondifferentiated hDPSCs. Enzyme-linked immunosorbent assay demonstrated that the secretion of brain-derived neurotrophic factor, vascular endothelial growth factor, and nerve growth factor differed between d-hDPSCs and hDPSCs. d-hDPSCs acquired neuronal features, including multiple intercommunicating cytoplasmic extensions and increased vesicular transport, as shown by the electron microscopic observation. Patch clamp analysis demonstrated the functional activity of d-hDPSCs by the presence of tetrodotoxin- and tetraethyl ammonium-sensitive voltage-gated sodium and potassium channels, respectively. A subset of d-hDPSCs was able to fire a single action potential. The results reported in this study demonstrate that hDPSCs are capable of neuronal commitment following neurosphere formation, characterized by distinct morphological and electrophysiological properties of functional neuronal cells.
机译:基于细胞的疗法正在出现,作为替代疗法的选择,以促进患有神经系统疾病的患者的功能恢复,神经系统疾病是导致死亡和永久性残疾的主要原因。本研究旨在在体外将人类牙髓干细胞(hDPSC)分化为功能活跃的神经元细胞。 hDPSC接受两步协议。首先,基于cAMP和Neurotrophin-3(NT-3)信号传导,通过形成神经球获得神经元诱导,然后是神经元成熟。在超微结构水平,表明球内微环境促进细胞间的通讯。 hDPSCs在体外从神经球中生长出来,并在cAMP和NT-3信号传导下建立了神经源性分化的hDPSC培养物(d-hDPSCs)。 d-hDPSCs的特征是与未分化的hDPSCs相比,神经元标志物(如神经元核,微管相关蛋白2,神经细胞粘附分子,生长相关蛋白43,突触素I和突触素)的表达增加。酶联免疫吸附试验表明,d-hDPSCs和hDPSCs的脑源性神经营养因子,血管内皮生长因子和神经生长因子的分泌不同。 d-hDPSCs具有神经元特征,包括多个相互通讯的胞质延伸和增加的囊泡转运,如电子显微镜观察所示。膜片钳分析通过河豚毒素和四乙基铵敏感的电压门控钠和钾通道的存在证明了d-hDPSC的功能活性。 d-hDPSC的子集能够激发单个动作电位。这项研究报告的结果表明,hDPSCs能够在神经球形成后作出神经元定向,其特征在于功能性神经元细胞具有独特的形态和电生理特性。

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