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人脐带血的神经源性潜能:类神经干细胞取决于先前的长期培养条件。

Neurogenic potential of human umbilical cord blood: neural-like stem cells depend on previous long-term culture conditions.

作者信息

Jurga M, Markiewicz I, Sarnowska A, Habich A, Kozlowska H, Lukomska B, Buzanska L, Domanska-Janik K

机构信息

Department of NeuroRepair, Medical Research Institute, Polish Academy of Sciences, Warsaw, Poland.

出版信息

J Neurosci Res. 2006 Mar;83(4):627-37. doi: 10.1002/jnr.20766.

Abstract

In vitro studies conducted by our research group documented that neural progenitor cells can be selected from human umbilical cord blood (HUCB-NPs). Due to further expansion of these cells we have established the first human umbilical cord blood-derived neural-like stem cell line (HUCB-NSC) growing in serum-free (SF) or low-serum (LS) medium for over 3 years. The purpose of the study was to evaluate the neurogenic potential of HUCB-NSCs cultured in SF and LS condition in different in vitro settings before transplantation. We have shown that the number of cells attaining neuronal features was significantly higher for cultures expanded in LS than in SF condition. Moreover, the presence of neuromorphogens, cultured rat astrocytes or hippocampal slices promoted further differentiation of HUCB-NSCs into neural lineage much more effectively when the cells had derived from LS cultures. The highest response was observed in the case of co-cultures with rat primary astrocytes as well as hippocampal organotypic slices. However, the LS cells co-cultured with hippocampal slices expressed exclusively a set of early and late neuronal markers whereas no detection of cells with glial-specific markers was possible. In conclusion, certain level of stem/progenitor cell commitment is important for optimal response of HUCB-NSC on the neurogenic signals provided by surrounding environment in vitro.

摘要

我们研究小组进行的体外研究证明,可以从人脐带血中筛选出神经祖细胞(HUCB-NPs)。由于这些细胞的进一步扩增,我们建立了首个源自人脐带血的神经样干细胞系(HUCB-NSC),该细胞系在无血清(SF)或低血清(LS)培养基中生长超过3年。本研究的目的是在移植前,评估在不同体外条件下,在SF和LS条件下培养的HUCB-NSC的神经发生潜能。我们发现,在LS条件下扩增的培养物中,获得神经元特征的细胞数量显著高于在SF条件下扩增的培养物。此外,当细胞源自LS培养物时,神经形态发生素、培养的大鼠星形胶质细胞或海马切片的存在能更有效地促进HUCB-NSC进一步分化为神经谱系。与大鼠原代星形胶质细胞以及海马器官型切片共培养时,观察到的反应最为强烈。然而,与海马切片共培养的LS细胞仅表达一组早期和晚期神经元标记物,而无法检测到具有胶质特异性标记物的细胞。总之,一定水平的干细胞/祖细胞定向分化对于HUCB-NSC在体外对周围环境提供的神经发生信号的最佳反应很重要。

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