Xu Huihui, Zhang Huijing, Li Tiechuan, Duan Xuexin
State Key Laboratory of Precision Measuring Technology and Instruments, and College of Precision Instrument and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China.
Biomicrofluidics. 2025 May 13;19(3):031501. doi: 10.1063/5.0267049. eCollection 2025 May.
Manipulation of red blood cells (RBCs) in microscale has proven to play a pivotal role in various applications, such as disease diagnosis and drug delivery. Over the past decades, the capabilities of microscale manipulation techniques have evolved from simple particle manipulation to cells and organisms, with numerous microfluidic-based research tools being developed for RBC manipulation. This review first introduces the reported microscale manipulation techniques and their principles, including passive microfluidic methods based on microstructures and hydrodynamics, as well as active methods such as acoustic, optical, and electrical techniques. It then focuses on the application scenarios of these micro-scale manipulation methods for RBC manipulation, including the investigation of RBC mechanical properties, the preparation of RBC carriers, the control of RBC rotation, and RBC lysis. Finally, the future prospects of microscale techniques in RBC manipulation are discussed. This review offers a comprehensive comparison of various techniques, aiming to provide researchers from different fields with a broad perspective and to guide the continued development of microscale manipulation methods for RBC applications. It seeks to help researchers from diverse backgrounds stay informed about the latest trends and advancements in the field.
事实证明,在微观尺度上对红细胞(RBC)进行操控在疾病诊断和药物递送等各种应用中发挥着关键作用。在过去几十年中,微观尺度操控技术的能力已从简单的粒子操控发展到细胞和生物体操控,人们开发了众多基于微流体的研究工具用于红细胞操控。本文综述首先介绍了已报道的微观尺度操控技术及其原理,包括基于微结构和流体动力学的被动微流体方法,以及声学、光学和电学技术等主动方法。然后重点介绍了这些微观尺度操控方法在红细胞操控方面的应用场景,包括红细胞力学性能研究、红细胞载体的制备、红细胞旋转控制以及红细胞裂解。最后讨论了微观尺度技术在红细胞操控方面的未来前景。本综述对各种技术进行了全面比较,旨在为不同领域的研究人员提供广阔的视角,并指导用于红细胞应用的微观尺度操控方法的持续发展。它旨在帮助不同背景的研究人员了解该领域的最新趋势和进展。