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Combining additive manufacturing with microfluidics: an emerging method for developing novel organs-on-chips

机译:用微流体结合添加剂制造:一种开发新型器官芯片的新出现方法

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Additive manufacturing (AM) or 3D printing is an ideal technology for building flexible, complex, monolithic devices. Organs-on-chips (OOCs) are biomimetic microsystems that recapitulate the crucial structures and functions of human organs. Organ-level activities, mechanics and physiological response can be stimulated and investigated in OOCs. Convergence of AM technology along with OOCs offers a more efficient route for creating complex organ or tissue structures with precise 3D cell patterning, biomaterial heterogeneity and specific functionalities. Here, we focus on the recent advances in the field, specifically in the fabrication modalities, materials and characterization methods, which are commonly employed for OOCs based on 3D bioprinting. We also discuss the most significant potential applications from integrating 3D bioprinting with OOCs, aiming to provide future strategies for more efficient, automated, modularly integrated, and customizable OOCs.
机译:添加剂制造(AM)或3D印刷是建立柔性,复杂的整体装置的理想技术。 Organs-On-Chips(Ooc)是仿生微摩特,其概括了人机的关键结构和功能。可以在OOC刺激和调查器官级活动,力学和生理反应。 AM技术与OOC的收敛提供了一种更有效的途径,用于创建具有精确的3D细胞图案化,生物材料异质性和特定功能的复杂器官或组织结构。在这里,我们专注于该领域的最近进步,特别是在制造模态,材料和表征方法中,其通常用于基于3D生物监测的OOC。我们还讨论了将3D BioPlinting与OOC集成的最重要的潜在应用程序,旨在为更高效,自动化,模块化集成和可定制的OOC提供未来的策略。

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