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首页> 外文期刊>Cellular and Molecular Neurobiology >Functional analysis of neuron-like cells differentiated from neural stem cells derived from bone marrow stroma cells in vitro.
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Functional analysis of neuron-like cells differentiated from neural stem cells derived from bone marrow stroma cells in vitro.

机译:体外从骨髓基质细胞分化为神经干细胞的神经元样细胞的功能分析。

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摘要

The transversal differentiation of bone marrow stroma cell (BMSCs) into neural stem cells (NSCs) has attracted much attention in recent years because of their therapeutic potential. However, the problem in therapeutic application of NSCs was how to confirm whether neuron-like cells differentiated from bone marrow stroma cell-derived neural stem cells (BMSCs-D-NSCs) possess corresponding functions of neurochemistry and electrophysiology. In the present study, we tried to affirm the function of neuron-like cells differentiated from BMSCs-D-NSCs in vitro. The BMSCs were harvested by gradient centrifugation in Ficoll-Paque and cultured in "NSCs medium". Immunocytochemistry was used to detect positive expression of neuron-specific nuclear protein (NeuN) in neuron-like cells derived from the BMSCs-D-NSCs. High-pressure liquid chromatography (HPLC) was used to identify neuron-like cells by detecting excitable amino acids [aspartic acid (Asp), glutamic acid (Glu)], inhibited amino acids [glycine (Gly), gamma (gamma) -aminobutyric acid (GABA), alanine (Ala)] or monoamines [noradrenaline (NE), 5-hydroxytryptamine (5-HT), dopamine (DA)]. Electrophysiological properties of the neuron-like cells were also examined using patch clamp analysis to verify their neuron-like functions. It was found that the neuron-like cells differentiated from the BMSCs-D-NSCs could express positive NeuN, synthesize and excrete amino acids, and show some typical electrophysiological properties including the typical Na+ and K+ ion channel membrane current under the voltage patch clamp condition, the typical static electrical membrane potential under the current patch clamp condition, and the differential membrane capacitance and resistance values in series between undifferentiated BMSCs-D-NSCs and differentiated neuron-like cells under the whole-cell patch clamp condition. The neuron-like cells differentiated from BMSCs-D-NSCs exhibit both neuron-like biochemical function and some corresponding electrophysiological properties.
机译:近年来,骨髓基质细胞(BMSCs)向神经干细胞(NSCs)的横向分化由于其治疗潜力而备受关注。然而,神经干细胞治疗应用中的问题是如何确认从骨髓基质细胞衍生的神经干细胞(BMSCs-D-NSCs)分化出的神经元样细胞是否具有相应的神经化学和电生理功能。在本研究中,我们试图确认体外从BMSCs-D-NSCs分化出的神经元样细胞的功能。通过在Ficoll-Paque中梯度离心收集BMSC,并在“ NSCs培养基”中培养。免疫细胞化学用于检测BMSCs-D-NSC衍生的神经元样细胞中神经元特异性核蛋白(NeuN)的阳性表达。高压液相色谱(HPLC)用于通过检测兴奋性氨基酸[天冬氨酸(Asp),谷氨酸(Glu)],抑制性氨基酸[甘氨酸(Gly),γ(γ)-氨基丁酸]来鉴定神经元样细胞酸(GABA),丙氨酸(Ala)]或单胺[去甲肾上腺素(NE),5-羟基色胺(5-HT),多巴胺(DA)]。还使用膜片钳分析检查了神经元样细胞的电生理特性,以验证其神经元样功能。发现从BMSCs-D-NSCs分化出的神经元样细胞可以表达正性NeuN,合成并分泌氨基酸,并在电压膜片钳条件下表现出一些典型的电生理特性,包括典型的Na +和K +离子通道膜电流。 ,当前膜片钳条件下的典型静电膜电位,以及在全细胞膜片钳条件下未分化的BMSCs-D-NSCs与分化的神经元样细胞之间的差分膜电容和电阻值串联。从BMSCs-D-NSCs分化出来的神经元样细胞既表现出神经元样的生化功能,又具有相应的电生理特性。

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