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器官型三维癌细胞培养反映药物反应:从表皮生长因子受体(EGFR)信号通路抑制中获得的经验教训

Organotypic three-dimensional cancer cell cultures mirror drug responses : lessons learned from the inhibition of EGFR signaling.

作者信息

Jacobi Nico, Seeboeck Rita, Hofmann Elisabeth, Schweiger Helmut, Smolinska Veronika, Mohr Thomas, Boyer Alexandra, Sommergruber Wolfgang, Lechner Peter, Pichler-Huebschmann Corina, Önder Kamil, Hundsberger Harald, Wiesner Christoph, Eger Andreas

机构信息

IMC University of Applied Sciences Krems, Department Life Sciences, Research Institute for Applied Bioanalytics and Drug Development, A-3500 Krems, Austria.

IMC University of Applied Sciences Krems, Department Life Sciences, Institute of Medical and Pharmaceutical Biotechnology, A-3500 Krems, Austria.

出版信息

Oncotarget. 2017 Nov 17;8(64):107423-107440. doi: 10.18632/oncotarget.22475. eCollection 2017 Dec 8.

Abstract

Complex three-dimensional (3D) models that recapitulate human tumor biology are essential to understand the pathophysiology of the disease and to aid in the discovery of novel anti-cancer therapies. 3D organotypic cultures exhibit intercellular communication, nutrient and oxygen gradients, and cell polarity that is lacking in two-dimensional (2D) monolayer cultures. In the present study, we demonstrate that 2D and 3D cancer models exhibit different drug sensitivities towards both targeted inhibitors of EGFR signaling and broad acting cytotoxic agents. Changes in the kinase activities of ErbB family members and differential expression of apoptosis- and survival-associated genes before and after drug treatment may account for the differential drug sensitivities. Importantly, EGFR oncoprotein addiction was evident only in the 3D cultures mirroring the effect of EGFR inhibition in the clinic. Furthermore, targeted drug efficacy was strongly increased when incorporating cancer-associated fibroblasts into the 3D cultures. Taken together, we provide conclusive evidence that complex 3D cultures are more predictive of the clinical outcome than their 2D counterparts. In the future, 3D cultures will be instrumental for understanding the mode of action of drugs, identifying genotype-drug response relationships and developing patient-specific and personalized cancer treatments.

摘要

能够概括人类肿瘤生物学特征的复杂三维(3D)模型对于理解该疾病的病理生理学以及辅助发现新型抗癌疗法至关重要。3D器官型培养物表现出细胞间通讯、营养和氧气梯度以及二维(2D)单层培养物中所缺乏的细胞极性。在本研究中,我们证明2D和3D癌症模型对EGFR信号通路的靶向抑制剂和广泛作用的细胞毒性药物表现出不同的药物敏感性。药物治疗前后ErbB家族成员激酶活性的变化以及凋亡和存活相关基因的差异表达可能解释了这种不同的药物敏感性。重要的是,EGFR癌蛋白成瘾仅在反映临床中EGFR抑制作用的3D培养物中明显。此外,将癌症相关成纤维细胞纳入3D培养物时,靶向药物疗效显著提高。综上所述,我们提供了确凿的证据,即复杂的3D培养物比其2D对应物更能预测临床结果。未来,3D培养物将有助于理解药物的作用方式、确定基因型与药物反应的关系以及开发针对患者的个性化癌症治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84e6/5746077/98fc9d6eed0a/oncotarget-08-107423-g001.jpg

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