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首页> 外文期刊>Experimental Neurology >Differentiation assays of bone marrow-derived Multipotent Adult Progenitor Cell (MAPC)-like cells towards neural cells cannot depend on morphology and a limited set of neural markers.
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Differentiation assays of bone marrow-derived Multipotent Adult Progenitor Cell (MAPC)-like cells towards neural cells cannot depend on morphology and a limited set of neural markers.

机译:骨髓源性多能成年祖细胞(MAPC)样细胞向神经细胞的分化测定不能依赖于形态学和一组有限的神经标志物。

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There are accumulating studies that report a neurogenic potential of bone marrow-derived cells both in vitro as well as in vivo. Most claims of neural "transdifferentiation" have based their conclusions on morphology and neural gene expression. Recently, doubts have been raised about the validity of both outcome parameters since non-neural cells can extend neurites and show aberrant neural gene expression as a response to stress inducing factors. In this study, we compared bone marrow-derived Multipotent Adult Progenitor Cell (MAPC)-like cells and neural stem cells (NSC) in their morphology and neural gene expression profile after neural differentiation using three differentiation protocols. We evaluated the expression of five neuroglial antigens [neurofilament 200 (NF200); beta III tubulin (beta3 tub); tau; Glial Fibrillary Acidic Protein (GFAP); Myelin Basic Protein (MBP) and RIP antigen] using real-time PCR (RT-PCR) and immunocytochemistry (ICC). MAPC-like cells adopted a neural-like morphology in one protocol but a fibroblast-like morphology in the two other protocols. RT-PCR and ICC show that MAPC-like cells already express the neural antigens beta III tubulin and NF200 at baseline, but no upregulation of these genes after exposure to three distinct differentiation protocols was seen. In contrast, NSC adopt neural and glial morphologies with a clear increase in expression of all neuroglial genes in all differentiation protocols used. In conclusion, our data demonstrate that neural-like morphology and expression of a limited set of neural marker genes by MAPC-like cells after differentiation are not absolute proof of neural transdifferentiation because MAPC-like cells only partially meet the criteria which are fulfilled by NSC after neural differentiation.
机译:越来越多的研究报告了在体外以及在体内,骨髓来源的细胞具有神经源性潜力。关于神经“转分化”的大多数主张都基于形态学和神经基因表达的结论。近来,由于非神经细胞可以延伸神经突并显示出异常的神经基因表达作为对压力诱导因子的反应,因此人们对这两个结果参数的有效性提出了疑问。在这项研究中,我们比较了使用三种分化方案在神经分化后骨髓来源的多能成年祖细胞(MAPC)样细胞和神经干细胞(NSC)的形态和神经基因表达谱。我们评估了五种神经胶质抗原的表达[神经丝200(NF200); beta III微管蛋白(beta3 tub);头胶质纤维酸性蛋白(GFAP);髓磷脂碱性蛋白(MBP)和RIP抗原]使用实时PCR(RT-PCR)和免疫细胞化学(ICC)。 MAPC样细胞在一种方案中采用了神经样形态,但在另两种方案中采用了成纤维细胞样形态。 RT-PCR和ICC显示MAPC样细胞已经在基线表达了神经抗原βIII微管蛋白和NF200,但是在暴露于三种不同的分化方案后,这些基因没有上调。相反,NSC采用神经和神经胶质形态,在所有使用的分化方案中,所有神经胶质基因的表达均明显增加。总之,我们的数据表明,分化后MAPC样细胞的神经样形态和有限的一组神经标记基因的表达不是神经转分化的绝对证据,因为MAPC样细胞仅部分满足NSC所满足的标准神经分化后。

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