Peñaherrera-Pazmiño Ana Belén, Rosero Gustavo Iván, Pérez Maximiliano, Lerner Betiana
Centro de Investigación Biomédica (CENBIO), Facultad de Ciencias de la Salud Eugenio Espejo, Universidad UTE, Quito 170527, Ecuador.
Special Coatings and Nanostructures Engineering (IREN), National Technological University, Buenos Aires 1706, Argentina.
Polymers (Basel). 2025 Jun 20;17(13):1723. doi: 10.3390/polym17131723.
Flexographic printing, traditionally used in the packaging industry, has emerged as a promising technology for microfluidic device fabrication due to enabling high resolution and being commercially available at a low cost compared to conventional techniques. This review explores the adaptation of a photopolymer flexographic printing plate mold (FMold) for microfluidics, examining its advantages, challenges, and applications. It offers a state-of-the-art view of the application of FMold for microfluidic systems, which offers a unique opportunity in terms of cost-effectiveness, scalability, and rapid prototyping. Applications are diverse: FMold has enabled the fabrication of microfluidic devices used in enhanced oil recovery to prepare rock-on-a-chip models, droplet generation and storage, suspension cell culture, monoclonal antibody production, complex cell differentiation pattern creation, phage screening, drug screening, cell detection, and cancer stem cell culture. Since its first appearance in 2018, FMold has been utilized in 50 publications in different laboratories around the world. Key advancements, current research trends, and future prospects are discussed to provide a comprehensive overview of this evolving tool.
苯胺印刷术传统上用于包装行业,由于其能够实现高分辨率且与传统技术相比成本较低,已成为微流控设备制造中一种很有前景的技术。本文综述探讨了用于微流控的光聚合物苯胺印刷版模具(FMold)的适配情况,研究了其优点、挑战及应用。它提供了FMold在微流控系统应用方面的最新观点,在成本效益、可扩展性和快速原型制作方面提供了独特的机会。其应用多种多样:FMold已用于制造用于强化采油的微流控设备,以制备芯片上的岩石模型、液滴生成与存储、悬浮细胞培养、单克隆抗体生产、复杂细胞分化模式创建、噬菌体筛选、药物筛选、细胞检测以及癌症干细胞培养。自2018年首次出现以来,FMold已在全球不同实验室的50篇出版物中得到应用。文中讨论了关键进展、当前研究趋势和未来前景,以全面概述这一不断发展的工具。