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首页> 外文期刊>Proteome science >Colorectal cancer derived organotypic spheroids maintain essential tissue characteristics but adapt their metabolism in culture
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Colorectal cancer derived organotypic spheroids maintain essential tissue characteristics but adapt their metabolism in culture

机译:大肠癌衍生的器官型球体保持基本的组织特征,但在培养中适应其新陈代谢

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Background Organotypic tumor spheroids, a 3D in vitro model derived from patient tumor material, preserve tissue heterogeneity and retain structural tissue elements, thus replicating the in vivo tumor more closely than commonly used 2D and 3D cell line models. Such structures harbour tumorigenic cells, as revealed by xenograft implantation studies in animal models and maintain the genetic makeup of the original tumor material. The aim of our work was a morphological and proteomic characterization of organotypic spheroids derived from colorectal cancer tissue in order to get insight into their composition and associated biology. Results Morphological analysis showed that spheroids were of about 250 μm in size and varied in structure, while the spheroid cells differed in shape and size and were tightly packed together by desmosomes and tight junctions. Our proteomic data revealed significant alterations in protein expression in organotypic tumor spheroids cultured as primary explants compared to primary colorectal cancer tissue. Components underlying cellular and tissue architecture were changed; nuclear DNA/ chromatin maintenance systems were up-regulated, whereas various mitochondrial components were down-regulated in spheroids. Most interestingly, the mesenchymal cells appear to be substantial component in such cellular assemblies. Thus the observed changes may partly occur in this cellular compartment. Finally, in the proteomics analysis stem cell-like characteristics were observed within the spheroid cellular assembly, reflected by accumulation of Alcam, Ctnnb1, Aldh1, Gpx2, and CD166. These findings were underlined by IHC analysis of Ctnnb1, CD24 and CD44, therefore warranting closer investigation of the tumorigenic compartment in this 3D culture model for tumor tissue. Conclusions Our analysis of organotypic CRC tumor spheroids has identified biological processes associated with a mixture of cell types and states, including protein markers for mesenchymal and stem-like cells. This 3D tumor model in which tumor heterogeneity is preserved may represent an advantageous model system to investigate novel therapeutic approaches.
机译:背景技术器官型肿瘤球体(一种源自患者肿瘤材料的3D体外模型)保留了组织异质性并保留了结构组织元素,因此比常用的2D和3D细胞系模型更紧密地复制了体内肿瘤。如动物模型中的异种移植研究所揭示的,这种结构具有致瘤细胞,并保持了原始肿瘤材料的遗传组成。我们的工作目的是对来自结直肠癌组织的器官型球体进行形态学和蛋白质组学表征,以深入了解其组成和相关生物学。结果形态学分析表明,类球体的大小约为250μm,结构不同,而类球体的形状和大小各不相同,并通过桥粒和紧密连接紧密地堆积在一起。我们的蛋白质组学数据显示,与原发性结直肠癌组织相比,作为原发性外植体培养的器官型肿瘤球体中蛋白质表达的显着变化。细胞和组织结构的基础组件已更改;核DNA /染色质维持系统被上调,而球体中的各种线粒体成分被下调。最有趣的是,间充质细胞似乎是此类细胞装配中的重要组成部分。因此,观察到的变化可能部分发生在该细胞室中。最后,在蛋白质组学分析中,在球状细胞装配体中观察到了干细胞样特征,这反映在Alcam,Ctnnb1,Aldh1,Gpx2和CD166的积累上。 IHC分析Ctnnb1,CD24和CD44强调了这些发现,因此有必要对这种3D培养模型中肿瘤组织的致瘤区隔进行更深入的研究。结论我们对器官型CRC肿瘤球体的分析确定了与细胞类型和状态混合在一起的生物学过程,包括间充质和干细胞样细胞的蛋白质标记。保留了肿瘤异质性的3D肿瘤模型可能代表了研究新型治疗方法的有利模型系统。

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