Microsystems, Department of Mechanical Engineering, Eindhoven University of Technology, 5612 AE, Eindhoven, The Netherlands.
Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, 5612 AJ, Eindhoven, The Netherlands.
Lab Chip. 2022 May 3;22(9):1650-1679. doi: 10.1039/d1lc01168e.
Cilia are microscopic hair-like external cell organelles that are ubiquitously present in nature, also within the human body. They fulfill crucial biological functions: motile cilia provide transportation of fluids and cells, and immotile cilia sense shear stress and concentrations of chemical species. Inspired by nature, scientists have developed artificial cilia mimicking the functions of biological cilia, aiming at application in microfluidic devices like lab-on-chip or organ-on-chip. By actuating the artificial cilia, for example by a magnetic field, an electric field, or pneumatics, microfluidic flow can be generated and particles can be transported. Other functions that have been explored are anti-biofouling and flow sensing. We provide a critical review of the progress in artificial cilia research and development as well as an evaluation of its future potential. We cover all aspects from fabrication approaches, actuation principles, artificial cilia functions - flow generation, particle transport and flow sensing - to applications. In addition to in-depth analyses of the current state of knowledge, we provide classifications of the different approaches and quantitative comparisons of the results obtained. We conclude that artificial cilia research is very much alive, with some concepts close to industrial implementation, and other developments just starting to open novel scientific opportunities.
纤毛是微小的毛发状细胞细胞器,普遍存在于自然界中,也存在于人体中。它们具有至关重要的生物学功能:运动纤毛提供液体和细胞的运输,而不动纤毛感知切变应力和化学物质浓度。受自然启发,科学家们已经开发出了模仿生物纤毛功能的人工纤毛,旨在应用于微流控装置,如芯片实验室或器官芯片。通过激活人工纤毛,例如通过磁场、电场或气动,可产生微流体流动并运输颗粒。其他已经探索过的功能包括抗生物污染和流量感应。我们对人工纤毛研究和开发的进展进行了批判性回顾,并评估了其未来的潜力。我们涵盖了从制造方法、致动原理、人工纤毛功能——流动产生、颗粒输送和流动感应——到应用的所有方面。除了对现有知识状态进行深入分析外,我们还对不同方法进行了分类,并对获得的结果进行了定量比较。我们的结论是,人工纤毛研究非常活跃,有些概念接近工业实施,而其他发展才刚刚开始开辟新的科学机会。