Department of Biomedical Engineering, University of Miami, Coral Gables, FL, USA.
Medical Scientist Training Program, University of Miami Miller School of Medicine, Miami, FL, USA.
Nat Commun. 2024 Jun 15;15(1):5118. doi: 10.1038/s41467-024-48864-3.
Organ on Chip platforms hold significant promise as alternatives to animal models or traditional cell cultures, both of which poorly recapitulate human pathophysiology and human level responses. Within the last 15 years, we have witnessed seminal scientific developments from academic laboratories, a flurry of startups and investments, and a genuine interest from pharmaceutical industry as well as regulatory authorities to translate these platforms. This Perspective identifies several fundamental design and process features that may act as roadblocks that prevent widespread dissemination and deployment of these systems, and provides a roadmap to help position this technology in mainstream drug discovery.
器官芯片平台作为动物模型或传统细胞培养的替代品具有重要的应用前景,因为这两者都不能很好地重现人类的病理生理学和人类水平的反应。在过去的 15 年中,我们见证了学术实验室的开创性科学发展、大量初创企业和投资的涌现,以及制药行业和监管机构对这些平台的真正兴趣,希望将其转化为实际应用。本观点确定了几个可能成为这些系统广泛传播和应用的障碍的基本设计和工艺特征,并提供了一个路线图,帮助将这项技术定位在主流药物发现中。