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Bioreactor-engineered cancer tissue-like structures mimic phenotypes, gene expression profiles and drug resistance patterns observed 'in vivo'

机译:生物反应器工程化的癌组织样结构模拟了“体内”观察到的表型,基因表达谱和耐药模式

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Anticancer compound screening on 2D cell cultures poorly predicts "in vivo" performance, while conventional 3D culture systems are usually characterized by limited cell proliferation, failing to produce tissue-like-structures (TLS) suitable for drug testing. We addressed engineering of TLS by culturing cancer cells in porous scaffolds under perfusion flow. Colorectal cancer (CRC) HT-29 cells were cultured in 2D, on collagen sponges in static conditions or in perfused bioreactors, or injected subcutaneously in immunodeficient mice. Perfused 3D (p3D) cultures resulted in significantly higher (p < 0.0001) cell proliferation than static 3D (s3D) cultures and yielded more homogeneous TB, with morphology and phenotypes similar to xenografts. Transcriptome analysis revealed a high correlation between xenografts and p3D cultures, particularly for gene clusters regulating apoptotic processes and response to hypoxia. Treatment with 5-Fluorouracil (5-FU), a frequently used but often clinically ineffective chemotherapy drug, induced apoptosis, down-regulation of anti-apoptotic genes (BCL-2, TRAF1, and c-FLIP) and decreased cell numbers in 2D, but only "nucleolar stress" in p3D and xenografts. Conversely, BCL-2 inhibitor ABT-199 induced cytotoxic effects in p3D but not in 2D cultures. Our findings advocate the importance of perfusion flow in 3D cultures of tumor cells to efficiently mimic functional features observed "in vivo" and to test anticancer compounds. (c) 2015 Elsevier Ltd. All rights reserved.
机译:在2D细胞培养物中进行的抗癌化合物筛选很难预测“体内”性能,而常规3D培养系统通常以有限的细胞增殖为特征,无法产生适用于药物测试的组织样结构(TLS)。我们通过在灌注流下在多孔支架中培养癌细胞来解决TLS的工程设计问题。在静态条件下或在灌注的生物反应器中,在胶原海绵上二维培养结直肠癌(CRC)HT-29细胞,或在免疫缺陷小鼠中皮下注射。与静态3D(s3D)培养相比,灌注3D(p3D)培养产生的细胞增殖明显更高(p <0.0001),并产生更均一的TB,其形态和表型与异种移植相似。转录组分析显示异种移植物与p3D培养物之间存在高度相关性,特别是对于调节细胞凋亡过程和对缺氧反应的基因簇而言。使用5-氟尿嘧啶(5-FU)(一种经常使用但在临床上通常无效的化学治疗药物)诱导凋亡,下调抗凋亡基因(BCL-2,TRAF1和c-FLIP)并降低2D细胞数,但在p3D和异种移植中只有“核仁压力”。相反,BCL-2抑制剂ABT-199在p3D中诱导细胞毒性作用,而在2D培养物中则没有。我们的发现主张在肿瘤细胞的3D培养物中灌注流对于有效模拟“体内”观察到的功能特征并测试抗癌化合物的重要性。 (c)2015 Elsevier Ltd.保留所有权利。

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