Nejati Babak, Shahhosseini Reza, Hajiabbasi Mobasher, Ardabili Nastaran Safavi, Baktash Kosar Bagtashi, Alivirdiloo Vahid, Moradi Sadegh, Rad Mohammadreza Farhadi, Rahimi Fatemeh, Farani Marzieh Ramezani, Ghazi Farhood, Mobed Ahmad, Alipourfard Iraj
Liver and Gastrointestinal Disease Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Faculty of Medicine, Istanbul Medipol University, Istanbul, Turkey.
Med Biol Eng Comput. 2025 Feb;63(2):321-337. doi: 10.1007/s11517-024-03199-5. Epub 2024 Oct 14.
Cancer remains one of the leading causes of death worldwide. The unclear molecular mechanisms and complex in vivo microenvironment of tumors make it difficult to clarify the nature of cancer and develop effective treatments. Therefore, the development of new methods to effectively treat cancer is urgently needed and of great importance. Organ-on-a-chip (OoC) systems could be the breakthrough technology sought by the pharmaceutical industry to address ever-increasing research and development costs. The past decade has seen significant advances in the spatial modeling of cancer therapeutics related to OoC technology, improving physiological exposition criteria. This article aims to summarize the latest achievements and research results of cancer cell treatment simulated in a 3D microenvironment using OoC technology. To this end, we will first discuss the OoC system in detail and then demonstrate the latest findings of the cancer cell treatment study by Ooc and how this technique can potentially optimize better modeling of the tumor. The prospects of OoC systems in the treatment of cancer cells and their advantages and limitations are also among the other points discussed in this study.
癌症仍然是全球主要死因之一。肿瘤分子机制不明以及体内微环境复杂,使得难以阐明癌症本质并开发有效治疗方法。因此,迫切需要且极为重要的是开发有效治疗癌症的新方法。芯片器官(OoC)系统可能是制药行业为应对不断增加的研发成本而寻求的突破性技术。在过去十年中,与OoC技术相关的癌症治疗空间建模取得了重大进展,改善了生理暴露标准。本文旨在总结使用OoC技术在三维微环境中模拟癌细胞治疗的最新成果和研究结果。为此,我们将首先详细讨论OoC系统,然后展示通过OoC进行癌细胞治疗研究的最新发现,以及该技术如何潜在地优化肿瘤的更好建模。OoC系统在癌细胞治疗中的前景及其优缺点也是本研究讨论的其他要点。