School of Integrative Engineering, Chung-Ang University, Seoul 06974, Republic of Korea.
Center for BioMicrosystems, Brain Science Institute, Korea Institute of Science and Technology (KIST), Seoul 02792, Republic of Korea.
Theranostics. 2018 Oct 22;8(19):5259-5275. doi: 10.7150/thno.29098. eCollection 2018.
For decades, scientists have been using two-dimensional cell culture platforms for high-throughput drug screening of anticancer drugs. Growing evidence indicates that the results of anti-cancer drug screening vary with the cell culture microenvironment, and this variation has been proposed as a reason for the high failure rate of clinical trials. Since the culture condition-dependent drug sensitivity of anti-cancer drugs may negatively impact the identification of clinically effective drug candidates, more reliable cancer platforms are urgently needed. In this review article, we provide an overview of how cell culture conditions can alter drug efficacy and highlight the importance of developing more reliable cancer drug testing platforms for use in the drug discovery process. The environmental factors that can alter drug delivery and efficacy are reviewed. Based on these observations of chemoresistant tumor physiology, we summarize the recent advances in the fabrication of cancer models and the model-dependent cytotoxicity of anti-cancer drugs, with a particular focus on engineered environmental factors in these platforms. It is believed that more physiologically relevant cancer models can revolutionize the drug discovery process.
几十年来,科学家一直使用二维细胞培养平台进行高通量抗癌药物筛选。越来越多的证据表明,抗癌药物筛选的结果与细胞培养微环境有关,这种变化被认为是临床试验高失败率的一个原因。由于抗癌药物的培养条件依赖性药物敏感性可能会对临床有效药物候选物的鉴定产生负面影响,因此迫切需要更可靠的癌症平台。在这篇综述文章中,我们概述了细胞培养条件如何改变药物疗效,并强调了开发更可靠的癌症药物测试平台用于药物发现过程的重要性。我们回顾了可以改变药物输送和疗效的环境因素。基于对耐药肿瘤生理学的这些观察结果,我们总结了癌症模型的最新进展以及抗癌药物的模型依赖性细胞毒性,特别关注这些平台中的工程环境因素。人们相信,更具生理相关性的癌症模型可以彻底改变药物发现过程。