Tingxian LiYuqi LiangJiahao LiYi YuMengmeng XiaoWei NiZhiyong ZhangGuojun Zhang
Tumor-derived exosomal miRNAs may have important functions in the onset and progression of cancers and are potential biomarkers for early diagnosis and prognosis monitoring. Yet, simple, sensitive, and label-free detection of exosomal miRNAs remains challenging. Herein, an ultrasensitive, label-free, and stable field-effect transistor (FET) biosensor based on a polymer-sorted high-purity semiconducting carbon nanotube (CNT) film is reported to detect exosomal miRNA. Different from conventional CNT FETs, the CNT FET biosensors employed a floating gate structure using an ultrathin Y2O3 as an insulating layer, and assembled Au nanoparticles (AuNPs) on Y2O3 as linkers to anchor probe molecules. A thiolated oligonucleotide probe was immobilized on the AuNP surface of the sensing area, after which miRNA21 was detectable by monitoring the current change before and after hybridization between the immobilized DNA probe and target miRNA. This method achieved both high sensitivity (LOD: 0.87 aM) and high specificity. Furthermore, the FET biosensor was employed to test clinical plasma samples, showing significant differences between healthy people and breast cancer patients. The CNT FET biosensor shows the potential applications in the clinical diagnosis of breast cancer.
Tingxian Li (9243891)Yuqi Liang (9027266)Jiahao Li (2184729)Yi Yu (28902)Meng-Meng Xiao (3330159)Wei Ni (286780)Zhiyong Zhang (44058)Guo-Jun Zhang (104987)
Tingxian LiPuiki LeungKun LiBinzhu LiuMengmeng XiaoNian LiuWei NiYutao LiZhiyong ZhangGuojun Zhang
Tengbo LvJiale LiuFei LiShenhui MaXianqi WeiXin LiChuanyu HanXiaoli Wang
Jiao WangKe-Yu YaoJiahua LiDuo Wai‐Chi WongJames Chung‐Wai Cheung
Shicai XuShouzhen JiangChao ZhangWeiwei YueYan ZouGuiying WangHuilan LiuXiu‐Mei ZhangMingzhen LiZhu Zhan-shouJihua Wang