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用于同时分析多种肺动脉高压生物标志物的单个微流控电化学传感器系统。

Single Microfluidic Electrochemical Sensor System for Simultaneous Multi-Pulmonary Hypertension Biomarker Analyses.

机构信息

KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul, Republic of Korea.

Department of Mechanical and Industrial Engineering, College of Engineering, Northeastern University, Boston, MA, 02115, USA.

出版信息

Sci Rep. 2017 Aug 8;7(1):7545. doi: 10.1038/s41598-017-06144-9.

Abstract

Miniaturized microfluidic biosensors have recently been advanced for portable point-of-care diagnostics by integrating lab-on-a-chip technology and electrochemical analysis. However, the design of a small, integrated, and reliable biosensor for multiple and simultaneous electrochemical analyses in a single device remains a challenge. Here, we present a simultaneous microfluidic electrochemical biosensing system to detect multiple biomarkers of pulmonary hypertension diseases in a single device. The miniaturized biosensor, which is composed of five chambers, is precisely and individually controlled using in-house-built pneumatic microvalves to manipulate the flow pathway. Each chamber is connected to an electrochemical sensor designed to detect four different biomarkers plus a reference control. Our design allows for loading of multiple reagents for simultaneous analyses. On the basis of the developed microfluidic electrochemical sensor system, we successfully detected four well-defined pulmonary hypertension-associated biomarkers, namely, fibrinogen, adiponectin, low-density lipoprotein, and 8-isoprostane. This novel approach offers a new platform for a rapid, miniaturized, and sensitive diagnostic sensor in a single device for various human diseases.

摘要

微型化微流控生物传感器最近通过整合芯片实验室技术和电化学分析技术,为便携式即时诊断而得到了发展。然而,设计一个用于在单个设备中进行多种和同时电化学分析的小型、集成和可靠的生物传感器仍然是一个挑战。在这里,我们提出了一种用于在单个设备中同时检测多种肺动脉高压疾病生物标志物的微流控电化学生物传感系统。该微型化生物传感器由五个腔室组成,使用内部制造的气动微阀精确且单独地控制,以操纵流路。每个腔室都连接到一个电化学传感器,用于检测四个不同的生物标志物和一个参考控制。我们的设计允许同时加载多种试剂进行同时分析。在开发的微流控电化学传感器系统的基础上,我们成功地检测了四种明确的与肺动脉高压相关的生物标志物,即纤维蛋白原、脂联素、低密度脂蛋白和 8-异前列腺素。这种新方法为在单个设备中针对各种人类疾病进行快速、微型化和敏感的诊断传感器提供了一个新平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75aa/5548735/ad86539c4691/41598_2017_6144_Fig1_HTML.jpg

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