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头颈部癌症干细胞富集球体模型用于抗癌化合物筛选。

Head and Neck Cancer Stem Cell-Enriched Spheroid Model for Anticancer Compound Screening.

机构信息

Centre for Human Molecular Genetics and Pharmacogenomics, Faculty of Medicine, University of Maribor, SI-2000 Maribor, Slovenia.

Laboratory for Biochemistry, Molecular biology and Genomics, Faculty of Chemistry and Chemical Engineering, University of Maribor, SI-2000 Maribor, Slovenia.

出版信息

Cells. 2020 Jul 16;9(7):1707. doi: 10.3390/cells9071707.

Abstract

Cancer stem cells (CSCs), a rare cell population in tumors, are resistant to conventional chemotherapy and thus responsible for tumor recurrence. To screen for active compounds targeting CSCs, a good CSC-enriched model compatible with high-throughput screening (HTS) is needed. Here, we describe a new head and neck cancer stem cell-enriched spheroid model (SCESM) suitable for HTS analyses of anti-CSC compounds. We used FaDu cells, round-bottom ultra-low adherent (ULA) microplates, and stem medium. The formed spheroids displayed increased expression of all stem markers tested (qRT-PCR and protein analysis) in comparison to the FaDu cells grown in a standard adherent culture or in a well-known HTS-compatible multi-cellular tumor spheroid model (MCTS). Consistent with increased stemness of the cells in the spheroid, confocal microscopy detected fast proliferating cells only at the outer rim of the SCESM spheroids, with poorly/non-proliferating cells deeper in. To confirm the sensitivity of our model, we used ATRA treatment, which strongly reduced the expression of selected stem markers. Altogether, we developed a CSC-enriched spheroid model with a simple protocol, a microplate format compatible with multimodal detection systems, and a high detection signal, making it suitable for anti-CSC compounds' HTS.

摘要

癌症干细胞(CSC)是肿瘤中一种罕见的细胞群体,对常规化疗具有抗性,因此是肿瘤复发的罪魁祸首。为了筛选针对 CSC 的活性化合物,需要一种与高通量筛选(HTS)兼容的富含 CSC 的良好模型。在这里,我们描述了一种新的头颈部癌症干细胞富集球体模型(SCESM),适用于抗 CSC 化合物的 HTS 分析。我们使用 FaDu 细胞、圆底超低附着(ULA)微孔板和干细胞培养基。与在标准附着培养或在已知的高通量筛选兼容的多细胞肿瘤球体模型(MCTS)中生长的 FaDu 细胞相比,形成的球体显示出所有测试的干细胞标志物的表达增加(qRT-PCR 和蛋白质分析)。与球体中细胞干性增加一致,共聚焦显微镜仅在 SCESM 球体的外边缘检测到快速增殖的细胞,而在更深的地方则检测到增殖能力差/不增殖的细胞。为了证实我们模型的敏感性,我们使用 ATRA 处理,这强烈降低了选定的干细胞标志物的表达。总之,我们开发了一种富含 CSC 的球体模型,具有简单的方案、与多模态检测系统兼容的微孔板格式以及高检测信号,使其适合于抗 CSC 化合物的 HTS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9b1/7408407/6d4711e9221b/cells-09-01707-g001.jpg

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