Biofabrication Directions in Recapitulating the Immune System-on-a-Chip

Robine Janssen, Laura Benito-Zarza, Pim Cleijpool,Marta G. Valverde,Silvia M. Mihaila, Shanna Bastiaan-Net,Johan Garssen,Linette E. M. Willemsen,Rosalinde Masereeuw

ADVANCED HEALTHCARE MATERIALS(2024)

引用 0|浏览0
暂无评分
摘要
Ever since the implementation of microfluidics in the biomedical field, in vitro models have experienced unprecedented progress that has led to a new generation of highly complex miniaturized cell culture platforms, known as Organs-on-a-Chip (OoC). These devices aim to emulate biologically relevant environments, encompassing perfusion and other mechanical and/or biochemical stimuli, to recapitulate key physiological events. While OoCs excel in simulating diverse organ functions, the integration of the immune organs and immune cells, though recent and challenging, is pivotal for a more comprehensive representation of human physiology. This comprehensive review covers the state of the art in the intricate landscape of immune OoC models, shedding light on the pivotal role of biofabrication technologies in bridging the gap between conceptual design and physiological relevance. The multifaceted aspects of immune cell behavior, crosstalk, and immune responses that are aimed to be replicated within microfluidic environments, emphasizing the need for precise biomimicry are explored. Furthermore, the latest breakthroughs and challenges of biofabrication technologies in immune OoC platforms are described, guiding researchers toward a deeper understanding of immune physiology and the development of more accurate and human predictive models for a.o., immune-related disorders, immune development, immune programming, and immune regulation. Organ-on-a-Chip (OoC) platforms encounter challenges when integrating immune organs and immune cells. This review explores immune OoC models, emphasizing biofabrication's role in achieving physiological relevance. It delves into immune cell crosstalk and responses in OoC, stressing the need for precise biomimicry. The review discusses breakthroughs and challenges in biofabrication technologies, guiding researchers toward enhanced understanding and predictive immune physiology modeling. image
更多
查看译文
关键词
3D printing,biofabrication,immune cells,immune organs,immune responses,immune system,microfluidics,organ-on-a-chip
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要