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用于多重磁珠免疫分析的自动化微流控处理平台。

Automated microfluidic processing platform for multiplexed magnetic bead immunoassays.

作者信息

Sasso Lawrence A, Johnston Ian H, Zheng Mingde, Gupte Rohit K, Ündar Akif, Zahn Jeffrey D

机构信息

BioMEMS Laboratory, Department of Biomedical Engineering, Rutgers, The State University of New Jersey, 599 Taylor Road, Piscataway, NJ 08854, USA.

Penn State Hershey Pediatric Cardiovascular Research Center, Department of Pediatrics, Surgery, and Bioengineering, Penn State Milton S. Hershey Medical Center, Penn State College of Medicine, Penn State Children's Hospital, Hershey, PA, 17033-0850, USA.

出版信息

Microfluid Nanofluidics. 2012 Oct;13(4):603-612. doi: 10.1007/s10404-012-0980-0.

Abstract

A microfluidic platform is presented which fully automates all incubation steps of a three-stage, multiplexed magnetic bead immunoassay, such as the Luminex xMAP technology. Magnetic actuation is used to transfer the microbeads between co-infused adjacent laminar flow streams to transport the beads into and out of incubation and wash solutions, with extended incubation channels to allow sufficient bead incubation times (1-30 min, commonly 5 min per stage) to enable high-sensitivity. The serial incubation steps of the immunoassay are completed in succession within the device with no operator interaction, and the continuous flow operation with magnetic bead transfer defines the incubation sequencing requiring no external fluidic controls beyond syringe pump infusion. The binding kinetics of the assay is empirically characterized to determine the required incubation times for specific assay sensitivities in the range 1 pg/ml to 100 ng/ml. By using a Luminex xMAP duplex assay, concurrent detection of IL-6 and TNF-α was demonstrated on-chip with a detection range 10 pg/ml to 1 ng/ml. This technology enables rapid automation of magnetic microbead assays, and has the potential to perform continuous concentration monitoring.

摘要

本文介绍了一种微流控平台,该平台可完全自动化三阶段多重磁珠免疫分析的所有孵育步骤,如Luminex xMAP技术。利用磁力驱动在共注入的相邻层流之间转移微珠,以便将珠子运送至孵育和洗涤溶液中进出,设有延长的孵育通道,以确保足够的珠子孵育时间(1 - 30分钟,通常每个阶段5分钟),从而实现高灵敏度。免疫分析的连续孵育步骤在设备内连续完成,无需操作人员干预,磁珠转移的连续流动操作确定了孵育顺序,除了注射泵输注外无需外部流体控制。通过实验表征分析的结合动力学,以确定在1 pg/ml至100 ng/ml范围内特定分析灵敏度所需的孵育时间。通过使用Luminex xMAP双工分析,在芯片上同时检测了IL - 6和TNF -α,检测范围为10 pg/ml至1 ng/ml。该技术实现了磁微珠分析的快速自动化,并且具有进行连续浓度监测的潜力。

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