会议专题

A label-free ultrasensitive fluorescence detection of viable Salmonella enteritidis by NMM/G-quadruplex DNA based on enzyme-induced cascade two-stage toehold strand-displacement

  The harm of Salmonella enteritidis(S.enteritidis)to public health mainly by contaminating fresh food and water emphasizes the urgent need for rapid detection techniques to help control the spread of the pathogen.In this assay,an newly designed capture probe complex that contained specific S.enteritidis-aptamer and hybridized signal target sequence was used for viable S.enteritidis recognition directly.In the presence of the target S.enteritidis,single-stranded target sequences were liberated and initiated the replication-cleavage reaction,producing numerous G-quadruplex structures with a linker on the 3”-end.And then,the sensing system took innovative advantage of quadratic linker-induced strand-displacement for the first time to release target sequence in succession,leading to the cyclic reuse of the target sequences and cascade signal amplification,thereby achieving the successive production of G-quadruplex structures.The fluorescent dye,N-Methyl mesoporphyrin IX,binded to these G-quadruplex structures and generated significantly enhanced fluorescent signals to achieve highly sensitive detection of S.enteritidis down to 60 CFU/mL with a linear range from 102 to 107 CFU/mL.By coupling the cascade two-stage target sequences-recyclable toehold strand-displacement with aptamer-based target recognition successfully,it is the first report on a novel non-label,modification-free and DNA extraction-free ultrasensitive fluorescence biosensor for detecting viable S.enteritidis directly,which can discriminate from dead S.enteritidis.

Fluorescence biosensor Label-free Salmonella enteritidis Aptamer Toehold strand-displacement G-quadruplex

Peng Zhang Hui Liu Suzhen Ma Shuai Men Qingzhou Li Xin Yang Hongning Wang

College of Life Sciences,Animal Disease Prevention and Food Safety Key Laboratory of Sichuan Province,Sichuan University,Key Laboratory of Bio-Resources and Eco-Environment of Ministry of Education,”985 Project” Science Innovative Platform for Resource and Environment Protection of Southwestern,Chengdu 610065,China

国内会议

第七届中国畜牧科技论坛

重庆

英文

779-792

2016-05-25(万方平台首次上网日期,不代表论文的发表时间)