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Advances in establishment and analysis of three-dimensional tumor spheroid-based functional assays for target validation and drug evaluation

机译:用于靶标验证和药物评估的基于三维肿瘤椭球的功能测定方法的建立和分析进展

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Background There is overwhelming evidence that in vitro three-dimensional tumor cell cultures more accurately reflect the complex in vivo microenvironment than simple two-dimensional cell monolayers, not least with respect to gene expression profiles, signaling pathway activity and drug sensitivity. However, most currently available three-dimensional techniques are time consuming and/or lack reproducibility; thus standardized and rapid protocols are urgently needed. Results To address this requirement, we have developed a versatile toolkit of reproducible three-dimensional tumor spheroid models for dynamic, automated, quantitative imaging and analysis that are compatible with routine high-throughput preclinical studies. Not only do these microplate methods measure three-dimensional tumor growth, but they have also been significantly enhanced to facilitate a range of functional assays exemplifying additional key hallmarks of cancer, namely cell motility and matrix invasion. Moreover, mutual tissue invasion and angiogenesis is accommodated by coculturing tumor spheroids with murine embryoid bodies within which angiogenic differentiation occurs. Highly malignant human tumor cells were selected to exemplify therapeutic effects of three specific molecularly-targeted agents: PI-103 (phosphatidylinositol-3-kinase ( PI3K )-mammalian target of rapamycin ( mTOR ) inhibitor), 17- N -allylamino-17-demethoxygeldanamycin (17-AAG) (heat shock protein 90 (HSP90) inhibitor) and CCT130234 (in-house phospholipase C (PLC)γ inhibitor). Fully automated analysis using a Celigo cytometer was validated for tumor spheroid growth and invasion against standard image analysis techniques, with excellent reproducibility and significantly increased throughput. In addition, we discovered key differential sensitivities to targeted agents between two-dimensional and three-dimensional cultures, and also demonstrated enhanced potency of some agents against cell migration/invasion compared with proliferation, suggesting their preferential utility in metastatic disease. Conclusions We have established and validated a suite of highly reproducible tumor microplate three-dimensional functional assays to enhance the biological relevance of early preclinical cancer studies. We believe these assays will increase the translational predictive value of in vitro drug evaluation studies and reduce the need for in vivo studies by more effective triaging of compounds.
机译:背景技术有大量证据表明,与简单的二维细胞单层相比,体外三维肿瘤细胞培养更准确地反映了复杂的体内微环境,尤其是在基因表达谱,信号传导途径活性和药物敏感性方面。但是,目前大多数可用的三维技术都很耗时和/或缺乏可重复性。因此,迫切需要标准化和快速的协议。结果为了满足这一要求,我们开发了通用的可重现三维肿瘤球体模型工具包,用于动态,自动化,定量成像和分析,与常规的高通量临床前研究兼容。这些微孔板方法不仅可以测量三维肿瘤的生长,而且还得到了显着增强,以促进一系列功能测定,这些测定例证了癌症的其他关键特征,即细胞运动性和基质浸润。此外,通过将肿瘤球与鼠类胚体共培养来适应相互的组织入侵和血管生成,在鼠类胚体内发生血管生成分化。选择高度恶性的人类肿瘤细胞来举例说明三种特定的分子靶向药物的治疗效果:PI-103(磷脂酰肌醇-3-激酶(PI3K)-雷帕霉素的哺乳动物靶标(mTOR)抑制剂),17-N-烯丙基氨基-17-去甲氧基格尔德霉素(17-AAG)(热激蛋白90(HSP90)抑制剂)和CCT130234(内部磷脂酶C(PLC)γ抑制剂)。相对于标准图像分析技术,使用Celigo细胞仪进行的全自动分析已针对肿瘤球体生长和侵袭进行了验证,具有出色的可重复性和显着提高的通量。此外,我们发现了二维和三维文化之间对靶向药物的关键差异敏感性,并且还证明了与增殖相比,某些药物对细胞迁移/侵袭的效力增强,表明它们在转移性疾病中的优先效用。结论我们已经建立并验证了一套高度可重复的肿瘤微孔板三维功能测定方法,以增强早期临床前癌症研究的生物学意义。我们相信,这些分析将通过化合物的更有效分类来提高体外药物评估研究的翻译预测价值,并减少对体内研究的需求。

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