| Literature DB >> 29336145 |
Zixin Liu1,2, Yunlei Xianyu2, Wenshu Zheng2, Jiangjiang Zhang2, Yunjing Luo1, Yiping Chen2, Mingling Dong2, Jing Wu2, Xingyu Jiang2,3.
Abstract
Current magnetic relaxation switching (MRS) sensors for detection of trace targets in complex samples still suffer from limitations in terms of relatively low sensitivity and poor stability. To meet this challenge, we develop a longitudinal relaxation time (T1)-based nanosensor by using Mn2+ released from the reduction of a MnO2 nanoassembly that can induce the change of T1, and thus can greatly improve the sensitivity and overcome the "hook effect" of conventional MRS. Through the specific interaction between antigen and the antibody-functionalized MnO2 nanoassembly, the T1 signal of Mn2+ released from the nanoassembly is quantitatively determined by the antigen, which allows for highly sensitive and straightforward detection of targets. This approach broadens the applicability of magnetic biosensors and has great potential for applications in early diagnosis of disease biomarkers.Entities:
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Year: 2018 PMID: 29336145 DOI: 10.1021/acs.analchem.7b04817
Source DB: PubMed Journal: Anal Chem ISSN: 0003-2700 Impact factor: 6.986