Author:
Meng Fanyu,Yu Wenjun,Niu Minjia,Tian Xiaoting,Miao Yayou,Li Xvelian,Zhou Yan,Ma Lifang,Zhang Xiao,Qian Kun,Yu Yongchun,Wang Jiayi,Huang Lin
Abstract
AbstractNon-small cell lung cancer (NSCLC) is the most common pathological type of LC and ranks as the leading cause of cancer deaths. Circulating exosomes have emerged as a valuable biomarker for the diagnosis of NSCLC, while the performance of current electrochemical assays for exosome detection is constrained by unsatisfactory sensitivity and specificity. Here we integrated a ratiometric biosensor with an OR logic gate to form an assay for surface protein profiling of exosomes from clinical serum samples. By using the specific aptamers for recognition of clinically validated biomarkers (EpCAM and CEA), the assay enabled ultrasensitive detection of trace levels of NSCLC-derived exosomes in complex serum samples (15.1 particles μL−1within a linear range of 102–108particles μL−1). The assay outperformed the analysis of six serum biomarkers for the accurate diagnosis, staging, and prognosis of NSCLC, displaying a diagnostic sensitivity of 93.3% even at an early stage (Stage I). The assay provides an advanced tool for exosome quantification and facilitates exosome-based liquid biopsies for cancer management in clinics.Graphical Abstract
Funder
Innovative Research Team of High-level Local Universities in Shanghai
Shanghai Sailing Program
National Natural Science Foundation of China
Shanghai Institutions of Higher Learning
Innovation Group Project of Shanghai Municipal Health Commission
Innovation Research Plan by the Shanghai Municipal Education Commission
National Research Center for Translational Medicine Shanghai
Medical-Engineering Joint Funds of Shanghai Jiao Tong University
Shanghai Science and Technology Commission
Publisher
Springer Science and Business Media LLC
Subject
Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering
Cited by
10 articles.
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