Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor

Fibrinogen can transform fibrin through an agglutination reaction, finally forming fibrin polymer with grid structure. The density and viscosity of the reaction system changes drastically during the course of agglutination. In this research, we apply an independently-developed piezoelectric agglutin...

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Main Authors: Ming Chen, Dongbo Liu, Weiling Fu, Xing Hua, Qinghai Chen, Guoru Cai
Format: Article
Language:English
Published: MDPI AG 2010-03-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/10/3/2107/
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spelling doaj-0d1d9bf685994a81bdb79949302c676a2020-11-25T01:41:05ZengMDPI AGSensors1424-82202010-03-011032107211810.3390/s100302107Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination SensorMing ChenDongbo LiuWeiling FuXing HuaQinghai ChenGuoru CaiFibrinogen can transform fibrin through an agglutination reaction, finally forming fibrin polymer with grid structure. The density and viscosity of the reaction system changes drastically during the course of agglutination. In this research, we apply an independently-developed piezoelectric agglutination sensor to detect the fibrinogen agglutination reaction in patients with coronary heart diseases. The terminal judgment method of determining plasma agglutination reaction through piezoelectric agglutination sensor was established. In addition, the standard curve between plasma agglutination time and fibrinogen concentration was established to determinate fibrinogen content quantitatively. The results indicate the close correlation between the STAGO paramagnetic particle method and the method of piezoelectric agglutination sensor for the detection of Fibrinogen. The correlation coefficient was 0.91 (γ = 0.91). The determination can be completed within 10 minutes. The fibrinogen concentration in the coronary heart disease group was significantly higher than that of the healthy control group (P < 0.05). The results reveal that high fibrinogen concentration is closely correlated to the incurrence, development and prognosis of coronary heart diseases. Compared with other traditional methods, the method of piezoelectric agglutination sensor has some merits such as operation convenience, small size, low cost, quick detecting, good precision and the common reacting agents with paramagnetic particle method. http://www.mdpi.com/1424-8220/10/3/2107/piezoelectric sensorfibrinogen in plasmacoronary heart diseasesagglutination reaction
collection DOAJ
language English
format Article
sources DOAJ
author Ming Chen
Dongbo Liu
Weiling Fu
Xing Hua
Qinghai Chen
Guoru Cai
spellingShingle Ming Chen
Dongbo Liu
Weiling Fu
Xing Hua
Qinghai Chen
Guoru Cai
Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor
Sensors
piezoelectric sensor
fibrinogen in plasma
coronary heart diseases
agglutination reaction
author_facet Ming Chen
Dongbo Liu
Weiling Fu
Xing Hua
Qinghai Chen
Guoru Cai
author_sort Ming Chen
title Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor
title_short Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor
title_full Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor
title_fullStr Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor
title_full_unstemmed Quantitative Determination of Fibrinogen of Patients with Coronary Heart Diseases through Piezoelectric Agglutination Sensor
title_sort quantitative determination of fibrinogen of patients with coronary heart diseases through piezoelectric agglutination sensor
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2010-03-01
description Fibrinogen can transform fibrin through an agglutination reaction, finally forming fibrin polymer with grid structure. The density and viscosity of the reaction system changes drastically during the course of agglutination. In this research, we apply an independently-developed piezoelectric agglutination sensor to detect the fibrinogen agglutination reaction in patients with coronary heart diseases. The terminal judgment method of determining plasma agglutination reaction through piezoelectric agglutination sensor was established. In addition, the standard curve between plasma agglutination time and fibrinogen concentration was established to determinate fibrinogen content quantitatively. The results indicate the close correlation between the STAGO paramagnetic particle method and the method of piezoelectric agglutination sensor for the detection of Fibrinogen. The correlation coefficient was 0.91 (γ = 0.91). The determination can be completed within 10 minutes. The fibrinogen concentration in the coronary heart disease group was significantly higher than that of the healthy control group (P < 0.05). The results reveal that high fibrinogen concentration is closely correlated to the incurrence, development and prognosis of coronary heart diseases. Compared with other traditional methods, the method of piezoelectric agglutination sensor has some merits such as operation convenience, small size, low cost, quick detecting, good precision and the common reacting agents with paramagnetic particle method.
topic piezoelectric sensor
fibrinogen in plasma
coronary heart diseases
agglutination reaction
url http://www.mdpi.com/1424-8220/10/3/2107/
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