首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >An integrated microfluidic platform to perform uninterrupted SELEX cycles to screen affinity reagents specific to cardiovascular biomarkers
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An integrated microfluidic platform to perform uninterrupted SELEX cycles to screen affinity reagents specific to cardiovascular biomarkers

机译:一种集成的微流体平台,以进行不间断的SELEX循环,以筛选特异于心血管生物标志物的亲和试剂

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摘要

As cardiovascular diseases (CVD) are responsible for millions of deaths annually, there is a need for rapid and sensitive diagnosis of CVD at earlier stages. Aptamers generated by systematic evolution of ligands by exponential enrichment (SELEX) processes have been shown to be superior to conventional antibody-based cardiac biomarker detection. However, SELEX is a complicated, lengthy procedure requiring multiple rounds of extraction/amplification and well-trained personnel. To circumvent such issue, we designed an automated, miniaturized SELEX platform for the screening of aptamers towards three protein biomarkers associated with CVDs: N-terminal pro-peptide of B-type natriuretic peptide, human cardiac troponin I, and fibrinogen. The developed microfluidic platform was equipped with microfluidic devices capable of sample transport and mixing along with an on-chip nucleic acid amplification module such that the entire screening process (5 rounds of selection in 8 h.) could be performed consecutively on a single chip while consuming only 35 mu L of reagents in each cycle. This system may therefore serve as a promising, sensitive, cost-effective platform for the selection of aptamers specific for CVD biomarkers.
机译:由于心血管疾病(CVD)每年负责数百万死亡,需要在早期阶段对CVD的快速和敏感的诊断。已经显示通过指数富集(SELEX)工艺的配体的系统演化产生的适体,从而优于常规的基于抗体的心脏生物标志物检测。然而,SELEX是一种复杂,冗长的程序,需要多轮提取/放大和训练有素的人员。为了规避此类问题,我们设计了一种自动小型化的SELEX平台,用于筛查适体筛选与CVDS相关的三种蛋白质生物标志物:B型Natrietic肽,人心肌肌钙蛋白I和纤维蛋白原的N-末端Pro-Peptide。开发的微流体平台配备有能够进行样品和混合的微流体装置以及片上核酸放大模块,使得整个筛选过程(8小时内选择5轮),可以在单个芯片上连续进行连续进行每个循环中只吃35亩的试剂。因此,该系统可以作为对CVD生物标志物特异的适体选择的有希望的敏感性,经济高效的平台。

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