Institute for Applied Chemistry and Department of Chemistry, Hallym University, Chuncheon 200-702, Korea.
Sensors (Basel). 2017 Sep 14;17(9):2116. doi: 10.3390/s17092116.
Cardiovascular diseases such as acute myocardial infarction and heart failure accounted for the death of 17.5 million people (31% of all global deaths) in 2015. Monitoring the level of circulating N-terminal proBNP (NT-proBNP) is crucial for the detection of people at risk of heart failure. In this article, we describe a novel ultra-sensitive NT-proBNP test (-NT-proBNP) that allows the quantification of circulating NT-proBNP in 30 min at 25 °C in the linear detection range of 7.0-600 pg/mL. It is a first report on the application of a fluorescence bead labeled detection antibody, DNA-guided detection method, and glass fiber membrane platform for the quantification of NT-proBNP in clinical samples. Limit of blank, limit of detection, and limit of quantification were 2.0 pg/mL, 3.7 pg/mL, and 7 pg/mL, respectively. The coefficient of variation was found to be less than 10% in the entire detection range of 7-600 pg/mL. The test demonstrated specificity for NT-proBNP without interferences from bilirubin, intra-lipid, biotin, and hemoglobin. The serial dilution test for plasma samples containing various NT-proBNP levels showed the linear decrement in concentration with the regression coefficient of 0.980-0.998. These results indicate that -NT-proBNP test does not suffer from the interference of the plasma components for the measurement of NT-proBNP in clinical samples.
心血管疾病,如急性心肌梗死和心力衰竭,在 2015 年导致 1750 万人(占全球所有死亡人数的 31%)死亡。监测循环 N 末端脑钠肽前体(NT-proBNP)的水平对于发现心力衰竭高危人群至关重要。本文介绍了一种新型超敏 NT-proBNP 检测方法(-NT-proBNP),该方法可在 25°C 下 30 分钟内检测到线性检测范围为 7.0-600pg/mL 的循环 NT-proBNP。这是首次报道应用荧光珠标记检测抗体、DNA 引导检测方法和玻璃纤维膜平台来定量检测临床样本中的 NT-proBNP。空白限、检测限和定量限分别为 2.0pg/mL、3.7pg/mL 和 7.0pg/mL。在整个检测范围为 7-600pg/mL 内,变异系数小于 10%。该测试显示对 NT-proBNP 具有特异性,不会受到胆红素、内脂质、生物素和血红蛋白的干扰。对含有不同 NT-proBNP 水平的血浆样本进行的系列稀释测试显示,浓度呈线性递减,回归系数为 0.980-0.998。这些结果表明,-NT-proBNP 测试不受血浆成分干扰,可用于临床样本中 NT-proBNP 的测量。