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A Mimic of the Tumor Microenvironment: A Simple Method for Generating Enriched Cell Populations and Investigating Intercellular Communication

机译:肿瘤微环境的模仿:一种生成丰富的细胞群体和调查细胞间通讯的简单方法

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摘要

Understanding the early heterotypic interactions between cancer cells and the surrounding non-cancerous stroma is important in elucidating the events leading to stromal activation and establishment of the tumor microenvironment (TME). Several in vitro and in vivo models of the TME have been developed; however, in general these models do not readily permit isolation of individual cell populations, under non-perturbing conditions, for further study. To circumvent this difficulty, we have employed an in vitro TME model using a cell growth substrate consisting of a permeable microporous membrane insert that permits simple generation of highly enriched cell populations grown intimately, yet separately, on either side of the insert's membrane for extended co-culture times. Through use of this model, we are capable of generating greatly enriched cancer-associated fibroblast (CAF) populations from normal diploid human fibroblasts following co-culture (120 hr) with highly metastatic human breast carcinoma cells, without the use of fluorescent tagging and/or cell sorting. Additionally, by modulating the pore-size of the insert, we can control for the mode of intercellular communication (e.g., gap-junction communication, secreted factors) between the two heterotypic cell populations, which permits investigation of the mechanisms underlying the development of the TME, including the role of gap-junction permeability. This model serves as a valuable tool in enhancing our understanding of the initial events leading to cancer-stroma initiation, the early evolution of the TME, and the modulating effect of the stroma on the responses of cancer cells to therapeutic agents.
机译:了解癌细胞与周围非癌性基质之间的早期异型相互作用对于阐明导致基质激活和肿瘤微环境(TME)建立的事件很重要。已经开发了几种TME的体外和体内模型。然而,一般而言,这些模型在不干扰的条件下不容易允许分离单个细胞群以进行进一步研究。为了解决这一难题,我们采用了体外TME模型,该模型使用的细胞生长底物由可渗透的微孔膜插入物组成,该插入物允许简单地生成高浓度的细胞群,这些细胞在插入物膜的两边分别亲密而独立地生长,从而可以扩展-文化时代。通过使用该模型,我们能够与高转移性人类乳腺癌细胞共培养(120小时)后,从正常的二倍体人类成纤维细胞中生成高度富集的癌症相关成纤维细胞(CAF)群体,而无需使用荧光标记和/或细胞分选。另外,通过调节插入片段的孔径,我们可以控制两个异型细胞群之间的细胞间通讯模式(例如,间隙连接通讯,分泌因子),从而可以研究潜在的机制。 TME包括间隙连接渗透性的作用。该模型是增强我们对导致癌症基质起始的初始事件,TME的早期进化以及基质对癌细胞对治疗药物反应的调节作用的理解的宝贵工具。

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