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Comparison of tumor biology of two distinct cell sub-populations in lung cancer stem cells

机译:肺癌干细胞中两个不同细胞亚群的肿瘤生物学比较

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摘要

Characterization of the stem-like properties of cancer stem cells (CSCs) remain indirect and qualitative, especially the ability of CSCs to undergo asymmetric cell division for self renewal and differentiation, a unique property of cells of stem origin. It is partly due to the lack of stable cellular models of CSCs. In this study, we developed a new approach for CSC isolation and purification to derive a CSC-enriched cell line (LLC-SE). By conducting five consecutive rounds of single cell cloning using the LLC-SE cell line, we obtained two distinct sub-population of cells within the Lewis lung cancer CSCs that employed largely symmetric division for self-renewal (LLC-SD) or underwent asymmetric division for differentiation (LLC-ASD). LLC-SD and LLC-ASD cell lines could be stably passaged in culture and be distinguished by cell morphology, stem cell marker, spheroid formation and subcutaneous tumor initiation efficiency, as well as orthotopic lung tumor growth, progression and survival. The ability LLC-ASD cells to undergo asymmetric division was visualized and quantified by the asymmetric segregation of labeled BrdU and NUMB to one of the two daughter cells in anaphase cell division. The more stem-like LLC-SD cells exhibited higher capacity for tumorigenesis and progression and shorter survival. As few as 10 LLC-SD could initiate subcutaneous tumor growth when transplanted to the athymic mice. Collectively, these observations suggest that the SD-type of cells appear to be on the top of the hierarchical order of the CSCs. Furthermore, they have lead to generated cellular models of CSC self-renewal for future mechanistic investigations.
机译:癌症干细胞(CSC)的干样特性的表征仍然是间接的和定性的,特别是CSC经历不对称细胞分裂以自我更新和分化的能力,这是干细胞起源的独特特性。部分原因是缺乏稳定的CSC细胞模型。在这项研究中,我们开发了一种用于CSC分离和纯化的新方法,以衍生出富含CSC的细胞系(LLC-SE)。通过使用LLC-SE细胞系进行连续五轮单细胞克隆,我们获得了Lewis肺癌CSC中两个截然不同的亚群细胞,这些细胞采用了对称分布的自我更新(LLC-SD)或进行了不对称分裂用于区分(LLC-ASD)。 LLC-SD和LLC-ASD细胞系可以在培养物中稳定传代,并可以通过细胞形态,干细胞标志物,球状体形成和皮下肿瘤起始效率,以及原位肺肿瘤的生长,进展和存活来区分。通过标记的BrdU和NUMB与后期细胞分裂中两个子细胞之一的不对称分离,可以观察和量化LLC-ASD细胞经历不对称分裂的能力。像干细胞一样的LLC-SD细胞表现出更高的肿瘤发生和发展能力以及较短的生存期。移植到无胸腺小鼠中,只有10个LLC-SD可以启动皮下肿瘤生长。总体而言,这些观察结果表明,SD类型的细胞似乎位于CSC层次结构的顶部。此外,它们已导致生成CSC自我更新的细胞模型,以用于将来的机械研究。

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