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高通量筛选揭示 MEK 抑制剂联合在结肠癌球体中具有更高的协同效应。

High-throughput screening reveals higher synergistic effect of MEK inhibitor combinations in colon cancer spheroids.

机构信息

Department of Clinical and Molecular Medicine, Norwegian University of Science and Technology, Trondheim, Norway.

Department of Biotechnology, SINTEF Materials and Chemistry, Trondheim, Norway.

出版信息

Sci Rep. 2020 Jul 14;10(1):11574. doi: 10.1038/s41598-020-68441-0.

Abstract

Drug combinations have been proposed to combat drug resistance, but putative treatments are challenged by low bench-to-bed translational efficiency. To explore the effect of cell culture format and readout methods on identification of synergistic drug combinations in vitro, we studied response to 21 clinically relevant drug combinations in standard planar (2D) layouts and physiologically more relevant spheroid (3D) cultures of HCT-116, HT-29 and SW-620 cells. By assessing changes in viability, confluency and spheroid size, we were able to identify readout- and culture format-independent synergies, as well as synergies specific to either culture format or readout method. In particular, we found that spheroids, compared to 2D cultures, were generally both more sensitive and showed greater synergistic response to combinations involving a MEK inhibitor. These results further shed light on the importance of including more complex culture models in order to increase the efficiency of drug discovery pipelines.

摘要

药物组合已被提议用于对抗耐药性,但推测的治疗方法受到从实验室到临床转化效率低的挑战。为了探索细胞培养形式和读出方法对体外鉴定协同药物组合的影响,我们研究了对 HCT-116、HT-29 和 SW-620 细胞的标准平面(2D)布局和生理上更相关的球体(3D)培养物中 21 种临床相关药物组合的反应。通过评估活力、细胞密度和球体大小的变化,我们能够识别与培养形式或读出方法无关的协同作用,以及特定于培养形式或读出方法的协同作用。特别是,我们发现与 2D 培养物相比,球体通常对涉及 MEK 抑制剂的组合更敏感,并且表现出更大的协同反应。这些结果进一步阐明了在药物发现管道中增加更复杂的培养模型的重要性,以提高药物发现的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3844/7360566/5e825032259a/41598_2020_68441_Fig1_HTML.jpg

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