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从数字微流控样品预处理装置中自动喷射液滴,实现了批处理化学发光免疫分析。

Automated Droplet Ejection from a Digital Microfluidics Sample Pretreatment Device Enables Batch-Mode Chemiluminescence Immunoassay.

机构信息

Department of Laboratory Medicine, The Second Affiliated Hospital, School of Medicine, South China University of Technology, Guangzhou 510180, China.

National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital & Shenzhen Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Shenzhen 518116, China.

出版信息

Anal Chem. 2024 Sep 10;96(36):14433-14440. doi: 10.1021/acs.analchem.4c02217. Epub 2024 Aug 5.

DOI:10.1021/acs.analchem.4c02217
PMID:39103289
Abstract

Digital microfluidics (DMF) features programmed manipulation of fluids in multiple steps, making it a valuable tool for sample pretreatment. However, the integration of sample pretreatment with its downstream reaction and detection requires transferring droplets from the DMF device to the outside world. To address this issue, the present study developed a modified DMF device that allows automated droplet ejection out of the chip, facilitated by a tailor-designed interface. A double-layered DMF microchip with an oil-filled medium was flipped over, with a liquid infusion port and a liquid expulsion port accommodated on the top working PCB plate and the bottom grounded ITO plate, respectively, to facilitate chip-to-world delivery of droplets. Using chemiluminescent immunoassay (CLIA) as an illustrative application, the sample pretreatment was programmed on the DMF device, and CLIA droplets were ejected from the chip for signal reading. In our workflow, CLIA droplets can be ejected from the DMF device through the chip-to-world interface, freeing up otherwise occupied electrodes for more sample pretreatment and enabling streamlined droplet microreactions and batch-mode operation for bioanalysis. Integrated with these interfacing portals, the DMF system achieved a single-channel throughput of 17 samples per hour, which can be further upscaled for more productive applications by parallelizing the DMF modules. The results of this study demonstrate that the droplet ejection function that is innovated in a DMF sample pretreatment microsystem can significantly improve analytical throughput, providing an approach to establishing an automated but decentralized biochemical sample preparation workstation for large-scale and continuous bioanalysis.

摘要

数字微流控(DMF)具有可编程的多步流体操控功能,是一种用于样品预处理的有价值的工具。然而,将样品预处理与其下游反应和检测集成需要将液滴从 DMF 设备转移到外部世界。针对这一问题,本研究开发了一种改进的 DMF 设备,该设备允许通过定制设计的接口自动从芯片中喷射液滴。一个具有填充油的双层 DMF 微芯片被翻转过来,在顶部工作 PCB 板上有一个液体注入口和一个液体排出口,在底部接地的 ITO 板上有一个液体注入口和一个液体排出口,以方便液滴从芯片到世界的传递。使用化学发光免疫分析(CLIA)作为说明性应用,在 DMF 设备上编程进行样品预处理,并从芯片中喷射 CLIA 液滴进行信号读取。在我们的工作流程中,CLIA 液滴可以通过芯片到世界的接口从 DMF 设备中喷射出来,从而为更多的样品预处理释放原本被占用的电极,并为生物分析实现流线型的液滴微反应和批量操作。通过与这些接口端口集成,DMF 系统实现了每小时 17 个样本的单通道吞吐量,通过并行化 DMF 模块可以进一步提高产量,以实现更具生产力的应用。本研究的结果表明,在 DMF 样品预处理微系统中创新的液滴喷射功能可以显著提高分析通量,为建立自动化但分散的大规模连续生物分析生化样品制备工作站提供了一种方法。

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