Cedillo-Alcantar Diana F, Rodriguez-Moncayo Roberto, Maravillas-Montero Jose L, Garcia-Cordero Jose L
Laboratory of Microtechnologies for Biomedicine, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (Cinvestav), Monterrey 66628, Nuevo León Mexico.
Red de Apoyo a la Investigación, Universidad Nacional Autónoma de México e Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán, Mexico City 14080, Mexico.
ACS Sens. 2023 Feb 24;8(2):655-664. doi: 10.1021/acssensors.2c02148. Epub 2023 Jan 29.
The profiling of the effector functions of single immune cells─including cytokine secretion─can lead to a deeper understanding of how the immune system operates and to potential diagnostics and therapeutical applications. Here, we report a microfluidic device that pairs single cells and antibody-functionalized microbeads in hydrodynamic traps to quantitate cytokine secretion. The device contains 1008 microchambers, each with a volume of ∼500 pL, divided into six different sections individually addressed to deliver an equal number of chemical stimuli. Integrating microvalves allowed us to isolate cell/bead pairs, preventing cross-contamination with factors secreted by adjacent cells. We implemented a fluorescence sandwich immunoassay on the biosensing microbeads with a limit of detection of 9 pg/mL and were able to detect interleukin-8 (IL-8) secreted by single blood-derived human monocytes in response to different concentrations of LPS. Finally, our platform allowed us to observe a significant decrease in the number of IL-8-secreting monocytes when paracrine signaling becomes disrupted. Overall, our platform could have a variety of applications for which the analysis of cellular function heterogeneity is necessary, such as cancer research, antibody discovery, or rare cell screening.
对单个免疫细胞的效应功能进行分析(包括细胞因子分泌),可以更深入地了解免疫系统的运作方式,并有助于潜在的诊断和治疗应用。在此,我们报告一种微流控装置,该装置在流体动力学阱中将单个细胞与抗体功能化微珠配对,以定量细胞因子分泌。该装置包含1008个微腔,每个微腔的体积约为500皮升,分为六个不同的部分,分别用于输送等量的化学刺激物。集成微阀使我们能够分离细胞/微珠对,防止与相邻细胞分泌的因子发生交叉污染。我们在生物传感微珠上实施了荧光夹心免疫测定,检测限为9 pg/mL,并且能够检测来自人血液单核细胞在不同浓度脂多糖刺激下分泌的白细胞介素-8(IL-8)。最后,当旁分泌信号被破坏时,我们的平台使我们能够观察到分泌IL-8的单核细胞数量显著减少。总体而言,我们的平台可用于多种需要分析细胞功能异质性的应用,如癌症研究、抗体发现或稀有细胞筛选。