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三维细胞培养模型在肾癌癌症干细胞研究中的应用

Three-Dimensional Cell Culture Model Utilization in Renal Carcinoma Cancer Stem Cell Research.

作者信息

Maliszewska-Olejniczak Kamila, Brodaczewska Klaudia K, Bielecka Zofia F, Czarnecka Anna M

机构信息

Department of Oncology with Laboratory of Molecular Oncology, Military Institute of Medicine, Warsaw, Poland.

National Centre for Nuclear Research, Sołtana, 7, 05-400, Otwock, Poland.

出版信息

Methods Mol Biol. 2018;1817:47-66. doi: 10.1007/978-1-4939-8600-2_6.

Abstract

Specific 3D conditions of cancer cell lines have been optimized over last years, with growing significance of serum-free and xeno-free culture variants. The choice of proper culture media enables cancer stem cells proliferation in primary and stable cell lines. To obtain renal cell cancer stem-like phenotype, we employed media dedicated for mesenchymal cells and adult stem cells. Developed RCC cell line 3D culture system enables effective drug testing, including tyrosine kinase inhibitor anti-cancer cell toxicity. To induce formation of 3D spheroids by RCC cell lines, StemXvivo and NutriStem media must be used. Usage of laminin- or poly-D-lysine coated plates enhances also the formation of spheroids in 3D-promoting media. Seeding is optimal with Caki-1 or ACHN cell lines as well as 786-O or HKCSC cells. Our bio-mimic 3D RCC cell culture model promotes cell viability and stem-related gene expression including E-cadherin, N-cadherin, HIF1, HIF2, VEGF, Sox2, Pax2, and Nestin. 3D spheroid formation ability and spheroid volume increase are disturbed upon drug treatment. Untreated 3D structures reach ~100 μm in diameter at the end of 14-day long experiment. Sorter-based cell cycle analysis and Ki-67 staining should be conducted to verify specific toxicity. We suggest that due to the more complex architecture 3D RCC culture is more relevant to investigate the in vivo-like tumor drug response.

摘要

在过去几年中,癌细胞系的特定三维培养条件已得到优化,无血清和无异种源培养变体的重要性日益增加。选择合适的培养基可使癌干细胞在原代和稳定细胞系中增殖。为了获得肾癌细胞干细胞样表型,我们采用了专门用于间充质细胞和成人干细胞的培养基。开发的肾细胞癌细胞系三维培养系统可进行有效的药物测试,包括酪氨酸激酶抑制剂的抗癌细胞毒性测试。为了诱导肾癌细胞系形成三维球体,必须使用StemXvivo和NutriStem培养基。使用层粘连蛋白或聚-D-赖氨酸包被的培养板也可增强在促进三维生长的培养基中球体的形成。接种Caki-1或ACHN细胞系以及786-O或HKCSC细胞效果最佳。我们的生物模拟三维肾癌细胞培养模型可促进细胞活力和与干细胞相关的基因表达,包括E-钙黏蛋白、N-钙黏蛋白、低氧诱导因子1、低氧诱导因子2、血管内皮生长因子、性别决定区Y框蛋白2、配对盒基因2和巢蛋白。药物处理会干扰三维球体的形成能力和球体体积的增加。在为期14天的实验结束时,未经处理的三维结构直径可达约100μm。应进行基于分选仪的细胞周期分析和Ki-67染色以验证特定毒性。我们认为,由于三维肾癌细胞培养的结构更为复杂,因此更适合用于研究体内样肿瘤的药物反应。

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