检出限
生物标志物
医学
冲程(发动机)
注意事项
心肌梗塞
冠状动脉疾病
抗体
全血
免疫分析
内科学
心脏病学
病理
免疫学
色谱法
化学
工程类
机械工程
生物化学
作者
Young Mi Lee,Mi Jung Bae,Ye Seul Choi,Eunmi Lee,Junghwan Cho,Myung-Gwan Kim,Tan Minh Le,Hong Duc Thi Nguyen,Hyung Soo Han,Ji Young Park,Gun Oh Chong
标识
DOI:10.2174/1567202618666211109103720
摘要
Background: Stroke is one of the leading causes of death and disability in adulthood worldwide. A simple and convenient diagnostic method is needed for monitoring high-risk patients for stroke. Few POCTs are available for stroke diagnosis. Soluble blood P-selectin is known as a biomarker for platelet aggregation. Increased expression of P-selectin is observed in coronary artery disease, acute myocardial infarction, stroke and peripheral arterial disease. Objective: A simple method that can measure the increased expression of P-selectin in stroke patients is intended to be used for diagnosis or early detection and hospital monitoring of ischemic stroke. Method: Plasma proteins in blood were separated using a three-layered filter system. Quantum dot and antibody were conjugated to detect biomarkers present in plasma and then measured with a fluorescence spectrophotometer. Results: The detection limit of soluble P-selectin confirmed by immunoassay was 1 ng/ul. In order to increase the sensitivity and simplify the reaction, the detection limit was measured to evaluate the sensitivity of the quantum dot labeled anti P-selectin antibody. As a result, P-selectin of 5 ng/ul or more showed saturation signal intensity, indicating the upper limit of detection, and 10 pg/ul was the lower limit of detection. Conclusion: In this study, we proposed a three-layer filter membrane system that can separate biomarker- rich fractions from whole blood, simplifying the analysis process and improving sensitivity by using quantum dot-labeled antibodies to detect biomarkers. We hope that our system complements the advantages of POCT and can be applied to real clinical applications.
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