Cancer-on-a-chip for precision cancer medicine.

IF 6.1 2区 工程技术 Q1 BIOCHEMICAL RESEARCH METHODS
Lab on a Chip Pub Date : 2025-05-16 DOI:10.1039/d4lc01043d
Lunan Liu, Huishu Wang, Ruiqi Chen, Yujing Song, William Wei, David Baek, Mahan Gillin, Katsuo Kurabayashi, Weiqiang Chen
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引用次数: 0

Abstract

Many cancer therapies fail in clinical trials despite showing potent efficacy in preclinical studies. One of the key reasons is the adopted preclinical models cannot recapitulate the complex tumor microenvironment (TME) and reflect the heterogeneity and patient specificity in human cancer. Cancer-on-a-chip (CoC) microphysiological systems can closely mimic the complex anatomical features and microenvironment interactions in an actual tumor, enabling more accurate disease modeling and therapy testing. This review article concisely summarizes and highlights the state-of-the-art progresses in CoC development for modeling critical TME compartments including the tumor vasculature, stromal and immune niche, as well as its applications in therapying screening. Current dilemma in cancer therapy development demonstrates that future preclinical models should reflect patient specific pathophysiology and heterogeneity with high accuracy and enable high-throughput screening for anticancer drug discovery and development. Therefore, CoC should be evolved as well. We explore future directions and discuss the pathway to develop the next generation of CoC models for precision cancer medicine, such as patient-derived chip, organoids-on-a-chip, and multi-organs-on-a-chip with high fidelity. We also discuss how the integration of sensors and microenvironmental control modules can provide a more comprehensive investigation of disease mechanisms and therapies. Next, we outline the roadmap of future standardization and translation of CoC technology toward real-world applications in pharmaceutical development and clinical settings for precision cancer medicine and the practical challenges and ethical concerns. Finally, we overview how applying advanced artificial intelligence tools and computational models could exploit CoC-derived data and augment the analytical ability of CoC.

芯片上的癌症精准治疗。
许多癌症疗法在临床前研究中显示出强有力的疗效,但在临床试验中却失败了。其中一个关键原因是所采用的临床前模型不能概括复杂的肿瘤微环境(TME),不能反映人类癌症的异质性和患者特异性。肿瘤芯片微生理系统可以模拟实际肿瘤的复杂解剖特征和微环境相互作用,从而实现更准确的疾病建模和治疗测试。本文简要总结并重点介绍了CoC在肿瘤血管、基质和免疫生态位等关键TME区室建模方面的最新进展,以及CoC在治疗筛选中的应用。当前癌症治疗发展的困境表明,未来的临床前模型应该能够高精度地反映患者特异性病理生理和异质性,并能够为抗癌药物的发现和开发提供高通量筛选。因此,CoC也应该得到发展。我们探索了未来的发展方向,并讨论了开发下一代精确癌症医学的CoC模型的途径,如患者衍生芯片、类器官芯片和高保真的多器官芯片。我们还讨论了传感器和微环境控制模块的集成如何为疾病机制和治疗提供更全面的研究。接下来,我们概述了CoC技术在药物开发和精确癌症医学临床环境中的未来标准化和转化的路线图,以及实际挑战和伦理问题。最后,我们概述了如何应用先进的人工智能工具和计算模型来利用CoC衍生数据并增强CoC的分析能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Lab on a Chip
Lab on a Chip 工程技术-化学综合
CiteScore
11.10
自引率
8.20%
发文量
434
审稿时长
2.6 months
期刊介绍: Lab on a Chip is the premiere journal that publishes cutting-edge research in the field of miniaturization. By their very nature, microfluidic/nanofluidic/miniaturized systems are at the intersection of disciplines, spanning fundamental research to high-end application, which is reflected by the broad readership of the journal. Lab on a Chip publishes two types of papers on original research: full-length research papers and communications. Papers should demonstrate innovations, which can come from technical advancements or applications addressing pressing needs in globally important areas. The journal also publishes Comments, Reviews, and Perspectives.
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