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高通量3D筛选揭示了JIMT1乳腺癌细胞培养模型之间药物敏感性的差异。

High-throughput 3D screening reveals differences in drug sensitivities between culture models of JIMT1 breast cancer cells.

作者信息

Hongisto Vesa, Jernström Sandra, Fey Vidal, Mpindi John-Patrick, Kleivi Sahlberg Kristine, Kallioniemi Olli, Perälä Merja

机构信息

Biotechnology for Health and Well-being, VTT Technical Research Centre of Finland, Turku, Finland.

出版信息

PLoS One. 2013 Oct 23;8(10):e77232. doi: 10.1371/journal.pone.0077232. eCollection 2013.

Abstract

The traditional method for studying cancer in vitro is to grow immortalized cancer cells in two-dimensional monolayers on plastic. However, many cellular features are impaired in these artificial conditions, and large changes in gene expression compared to tumors have been reported. Three-dimensional cell culture models have become increasingly popular and are suggested to be better models than two-dimensional monolayers due to improved cell-to-cell contact and structures that resemble in vivo architecture. The aim of this study was to develop a simple high-throughput three-dimensional drug screening method and to compare drug responses in JIMT1 breast cancer cells when grown in two dimensions, in poly(2-hydroxyethyl methacrylate) induced anchorage-independent three-dimensional models, and in Matrigel three-dimensional cell culture models. We screened 102 compounds with multiple concentrations and biological replicates for their effects on cell proliferation. The cells were either treated immediately upon plating, or they were allowed to grow in three-dimensional cultures for 4 days before the drug treatment. Large variations in drug responses were observed between the models indicating that comparisons of culture model-influenced drug sensitivities cannot be made based on the effects of a single drug. However, we show with the 63 most prominent drugs that, in general, JIMT1 cells grown on Matrigel were significantly more sensitive to drugs than cells grown in two-dimensional cultures, while the responses of cells grown in poly(2-hydroxyethyl methacrylate) resembled those of the two-dimensional cultures. Furthermore, comparing the gene expression profiles of the cell culture models to xenograft tumors indicated that cells cultured in Matrigel and as xenografts most closely resembled each other. In this study, we also suggest that three-dimensional cultures can provide a platform for systematic experimentation of larger compound collections in a high-throughput mode and be used as alternatives to traditional two-dimensional screens for better comparability to the in vivo state.

摘要

传统的体外研究癌症的方法是在塑料培养皿上的二维单层中培养永生化癌细胞。然而,在这些人工条件下,许多细胞特征会受到损害,并且与肿瘤相比,基因表达也有很大变化。三维细胞培养模型越来越受欢迎,由于改善了细胞间接触以及具有类似于体内结构的结构,被认为比二维单层模型更好。本研究的目的是开发一种简单的高通量三维药物筛选方法,并比较JIMT1乳腺癌细胞在二维培养、聚(甲基丙烯酸2-羟乙酯)诱导的非锚定依赖三维模型以及基质胶三维细胞培养模型中的药物反应。我们用多种浓度和生物学重复筛选了102种化合物对细胞增殖的影响。细胞要么在接种后立即处理,要么在药物处理前在三维培养中生长4天。在这些模型之间观察到药物反应存在很大差异,这表明不能基于单一药物的作用来比较受培养模型影响的药物敏感性。然而,我们用63种最突出的药物表明,总体而言,在基质胶上生长的JIMT1细胞比在二维培养中生长的细胞对药物更敏感,而在聚(甲基丙烯酸2-羟乙酯)中生长的细胞的反应与二维培养中的细胞相似。此外,将细胞培养模型的基因表达谱与异种移植肿瘤进行比较表明,在基质胶中培养的细胞与异种移植的细胞彼此最相似。在本研究中,我们还表明三维培养可以为以高通量模式对更大的化合物库进行系统实验提供一个平台,并可作为传统二维筛选的替代方法,以便更好地与体内状态进行比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c54/3806867/ac6b632d51fa/pone.0077232.g001.jpg

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