Centre for Rapid and Sustainable Product Development, Polytechnic of Leiria, Marinha Grande, 2430-028, Portugal.
INESC Microsistemas e Nanotecnologias (INESC MN), Rua Alves Redol 9, Lisbon, 1000-029, Portugal.
Adv Mater. 2023 Sep;35(35):e2300692. doi: 10.1002/adma.202300692. Epub 2023 Jul 8.
Cancer kills millions of individuals every year all over the world (Global Cancer Observatory). The physiological and biomechanical processes underlying the tumor are still poorly understood, hindering researchers from creating new, effective therapies. Inconsistent results of preclinical research, in vivo testing, and clinical trials decrease drug approval rates. 3D tumor-on-a-chip (ToC) models integrate biomaterials, tissue engineering, fabrication of microarchitectures, and sensory and actuation systems in a single device, enabling reliable studies in fundamental oncology and pharmacology. This review includes a critical discussion about their ability to reproduce the tumor microenvironment (TME), the advantages and drawbacks of existing tumor models and architectures, major components and fabrication techniques. The focus is on current materials and micro/nanofabrication techniques used to manufacture reliable and reproducible microfluidic ToC models for large-scale trial applications.
每年全球都有数百万人因癌症而死亡(全球癌症观察站)。肿瘤发生的生理和生物力学过程仍未被充分了解,这阻碍了研究人员开发新的有效治疗方法。临床前研究、体内测试和临床试验的结果不一致,降低了药物批准率。3D 肿瘤芯片(ToC)模型将生物材料、组织工程、微结构制造以及传感和驱动系统集成在一个单一的设备中,能够可靠地进行基础肿瘤学和药理学研究。这篇综述包括对其重现肿瘤微环境(TME)能力的批判性讨论,现有肿瘤模型和架构的优缺点,主要组件和制造技术。重点是用于制造可靠且可重复的大规模试验应用微流控 ToC 模型的当前材料和微/纳米制造技术。