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3-Dimensional Culture Systems for Anti-Cancer Compound Profiling and High-Throughput Screening Reveal Increases in EGFR Inhibitor-Mediated Cytotoxicity Compared to Monolayer Culture Systems

机译:与单层培养系统相比用于抗癌化合物分析和高通量筛选的3维培养系统显示出EGFR抑制剂介导的细胞毒性的增加

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摘要

3-dimensional (3D) culture models have the potential to bridge the gap between monolayer cell culture and in vivo studies. To benefit anti-cancer drug discovery from 3D models, new techniques are needed that enable their use in high-throughput (HT) screening amenable formats. We have established miniaturized 3D culture methods robust enough for automated HT screens. We have applied these methods to evaluate the sensitivity of normal and tumorigenic breast epithelial cell lines against a panel of oncology drugs when cultured as monolayers (2D) and spheroids (3D). We have identified two classes of compounds that exhibit preferential cytotoxicity against cancer cells over normal cells when cultured as 3D spheroids: microtubule-targeting agents and epidermal growth factor receptor (EGFR) inhibitors. Further improving upon our 3D model, superior differentiation of EC50 values in the proof-of-concept screens was obtained by co-culturing the breast cancer cells with normal human fibroblasts and endothelial cells. Further, the selective sensitivity of the cancer cells towards chemotherapeutics was observed in 3D co-culture conditions, rather than as 2D co-culture monolayers, highlighting the importance of 3D cultures. Finally, we examined the putative mechanisms that drive the differing potency displayed by EGFR inhibitors. In summary, our studies establish robust 3D culture models of human cells for HT assessment of tumor cell-selective agents. This methodology is anticipated to provide a useful tool for the study of biological differences within 2D and 3D culture conditions in HT format, and an important platform for novel anti-cancer drug discovery.
机译:3维(3D)培养模型具有弥合单层细胞培养与体内研究之间的差距的潜力。为了从3D模型中发现抗癌药物,需要新技术以使其能够以高通量(HT)筛选合适的格式使用。我们已经建立了足以用于自动HT屏幕的小型3D培养方法。我们已应用这些方法评估了正常和致瘤性乳腺癌上皮细胞系在培养为单层(2D)和椭球体(3D)时对一组肿瘤药物的敏感性。我们已经鉴定出当以3D球体形式培养时,相对于正常细胞对癌细胞具有优先毒性的两类化合物:微管靶向剂和表皮生长因子受体(EGFR)抑制剂。通过将乳腺癌细胞与正常人成纤维细胞和内皮细胞共同培养,可以进一步改善我们的3D模型,从而在概念验证筛选中实现EC50值的卓越区分。此外,在3D共培养条件下,而不是在2D共培养单层中观察到癌细胞对化学疗法的选择性敏感性,突出了3D培养的重要性。最后,我们研究了推定的驱动EGFR抑制剂发挥不同作用力的机制。总之,我们的研究为肿瘤细胞选择剂的HT评估建立了可靠的人体细胞3D培养模型。预期该方法学将为研究HT格式的2D和3D培养条件下的生物学差异提供有用的工具,并为新型抗癌药物发现提供重要平台。

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