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In vitro Analysis of Neurospheres Derived from Glioblastoma Primary Culture: A Novel Methodology Paradigm

机译:胶质母细胞瘤原代培养衍生的神经球的体外分析:一种新的方法论范式

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摘要

Glioblastomas are the most lethal primary brain tumor that frequently relapse or progress as focal masses after radiation, suggesting that a fraction of tumor cells are responsible for the tumor regrowth. The identification of a brain tumor cell subpopulation with potent tumorigenic activity supports the cancer stem cell hypothesis in solid tumors. The goal of this study is to determine a methodology for the establishment of primary human glioblastoma cell lines. Our aim is achieved by taking the following approaches: (i) the establishment of primary glioblastoma cell culture; (ii) isolation of neurospheres derived from glioblastoma primary cultures; (iii) selection of CD133 cells from neurospheres, (iv) formation of subspheres in the CD133-positive population, (v) study of the expression level of GFAP, CD133, Nestin, Nanog, CD34, Sox2, CD44, and CD90 markers on tumor subspheres. Hence, we described a successful method for isolation of CD133-positive cell population and establishment of glioblastoma neurospheres from this primary culture, which are more robust than the ones derived straight from the tumor. Pointed out that the neurospheres derived from glioblastoma primary culture showed 29% more cells expressing CD133 then the ones straight tumor-derived, denoting a higher concentration of CD133-positive cells in the neurospheres derived from glioblastoma primary culture. These CD133-positive fractions were able to further generate subspheres. The subspheres derived from glioblastoma primary culture presented a well-defined morphology while the ones derived from the fresh tumor were sparce and less robust. And the negative fraction of CD133 cells was unable to generate subspheres. The tumor subspheres expressed GFAP, CD133, Nestin, Nanog, CD44, and CD90. Also, the present study describes an optimization of neurospheres/subspheres isolation from glioblastoma primary culture by selection of CD133-positive adherent stem cell.
机译:胶质母细胞瘤是最致命的原发性脑部肿瘤,在放疗后经常复发或进展为病灶,表明肿瘤细胞的一部分与肿瘤的再生有关。具有强致瘤活性的脑肿瘤细胞亚群的鉴定支持实体瘤中的癌症干细胞假说。这项研究的目的是确定建立人类原代胶质母细胞瘤细胞系的方法。我们的目标是通过以下方法实现的:(i)建立原代胶质母细胞瘤细胞培养; (ii)分离源自胶质母细胞瘤原代培养物的神经球; (iii)从神经球中选择CD133细胞,(iv)CD133阳性人群中亚球的形成,(v)研究GFAP,CD133,Nestin,Nanog,CD34,Sox2,CD44和CD90标记的表达水平肿瘤亚领域。因此,我们描述了一种成功的方法,可以从这种原代培养物中分离出CD133阳性细胞群并建立胶质母细胞瘤神经球,这种方法比直接来源于肿瘤的方法更可靠。指出源自胶质母细胞瘤原代培养的神经球细胞表达CD133的细胞比直接来源于肿瘤的细胞多29%,这表明源自胶质母细胞瘤原代培养的神经球中CD133阳性细胞的浓度更高。这些CD133阳性级分能够进一步产生亚球。源自胶质母细胞瘤原代培养的亚球体表现出清晰的形态,而源自新鲜肿瘤的亚球体则稀疏且不牢固。 CD133细胞的负部分不能产生亚球。肿瘤亚球表达GFAP,CD133,Nestin,Nanog,CD44和CD90。此外,本研究还描述了通过选择CD133阳性粘附干细胞,从胶质母细胞瘤原代培养中分离神经球/亚球的优化方法。

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