Yuan Shuai, Zhang Peng, Zhang Feng, Yan Shiqiang, Dong Ruihua, Wu Chengjun, Deng Jiu
School of Health and Life Sciences, University of Health and Rehabilitation Sciences, Qingdao 266113, China.
Biological and Environmental Science and Engineering Division, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.
iScience. 2024 Dec 20;28(1):111663. doi: 10.1016/j.isci.2024.111663. eCollection 2025 Jan 17.
Cell-cell interactions and communication represent the fundamental cornerstone of cells' collaborative efforts in executing diverse biological processes. A profound understanding of how cells interface through various mediators is pivotal across a spectrum of biological systems. Recent strides in microfluidic technologies have significantly bolstered the precision and prowess in capturing and manipulating cells with exceptional spatial and temporal resolution. These advanced methodologies converge with multi-signal mediator detection systems, furnishing potent, high-throughput platforms for dissecting cell-cell interactions at the single-cell level. This approach empowers researchers to delve into intricate cellular dynamics with unprecedented accuracy and efficiency. Here, we present a critical evaluation of the latest advancements in microfluidics-driven techniques for detecting signal mediators involved in cell-cell interactions and communication at the single-cell level. We underscore notable biological applications that have benefited from these technologies and identify pressing challenges that must be addressed in future endeavors leveraging microfluidic tools for single-cell interaction studies.
细胞间的相互作用和通讯是细胞协同执行各种生物过程的基本基石。深入了解细胞如何通过各种介质进行相互作用,对于一系列生物系统而言至关重要。微流控技术的最新进展显著提高了以卓越的空间和时间分辨率捕获和操纵细胞的精度与能力。这些先进方法与多信号介质检测系统相结合,为在单细胞水平剖析细胞间相互作用提供了强大的高通量平台。这种方法使研究人员能够以前所未有的准确性和效率深入探究复杂的细胞动力学。在此,我们对微流控驱动的技术在单细胞水平检测参与细胞间相互作用和通讯的信号介质方面的最新进展进行批判性评估。我们强调了受益于这些技术的显著生物学应用,并确定了在未来利用微流控工具进行单细胞相互作用研究的努力中必须解决的紧迫挑战。