IEEE Rev Biomed Eng. 2024;17:243-263. doi: 10.1109/RBME.2022.3217486. Epub 2024 Jan 12.
Neuron-on-chip (NoC) systems-microfluidic devices in which neurons are cultured-have become a promising alternative to replace or minimize the use of animal models and have greatly facilitated in vitro research. Here, we review and discuss current developments in neuron-on-chip platforms, with a particular emphasis on existing biological models, culturing techniques, biomaterials, and topologies. We also discuss how the architecture, flow, and gradients affect neuronal growth, differentiation, and development. Finally, we discuss some of the most recent applications of NoCs in fundamental research (i.e., studies on the effects of electrical, mechanical/topological, or chemical stimuli) and in disease modeling.
神经芯片(NoC)系统-其中培养神经元的微流控装置-已成为替代或最小化动物模型使用的有前途的方法,并极大地促进了体外研究。在这里,我们回顾和讨论了神经芯片平台的最新进展,特别强调了现有的生物模型、培养技术、生物材料和拓扑结构。我们还讨论了架构、流动和梯度如何影响神经元的生长、分化和发育。最后,我们讨论了 NoC 在基础研究(即,关于电、机械/拓扑或化学刺激的影响的研究)和疾病建模中的一些最新应用。