Department of Electrical and Computer Engineering, Faculty of Engineering, University of Waterloo, Waterloo, ON N2L 3G1, Canada.
Energy Materials Laboratory, School of Sciences and Engineering, The American University in Cairo, New Cairo 11835, Egypt.
Nanoscale. 2022 May 16;14(18):6761-6770. doi: 10.1039/d1nr08252c.
Cervical cancer (CC) is a major health care problem in low- and middle-income countries, necessitating the development of low-cost and easy-to-use assays for CC detection at point-of-care (POC) settings. An integrated microfluidic electrochemical assay for CC detection, named IMEAC, is presented that has the potential for identifying CC circulating DNA in whole blood samples. The IMEAC consists of two main modules: a plasma separator device that isolates plasma from whole blood with high purity and without the need for any external forces connected to a graphene oxide-based electrochemical biosensor that uses specific probe molecules for the detection of CC circulating DNA molecules. We fully characterize the performance of the individual modules and show that the integrated assay can be utilized for target DNA detection in whole blood samples, thus potentially transforming CC detection and screening at remote locations.
宫颈癌(CC)是中低收入国家的一个主要卫生保健问题,需要开发低成本和易于使用的检测方法,以便在即时护理(POC)环境下进行 CC 检测。本文提出了一种用于 CC 检测的集成微流控电化学分析方法(IMEAC),该方法有可能识别全血样本中的 CC 循环 DNA。IMEAC 由两个主要模块组成:一个血浆分离装置,可在无需任何外部力的情况下,从全血中分离出高纯度的血浆,与基于氧化石墨烯的电化学生物传感器相连,该传感器使用特定的探针分子来检测 CC 循环 DNA 分子。我们充分表征了各个模块的性能,并表明该集成分析方法可用于全血样本中的靶 DNA 检测,从而有可能改变偏远地区的 CC 检测和筛查方式。