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Selection Characterization and Application of ssDNA Aptamer against Furaneol

机译:抗呋喃醇的ssDNA适体的选择表征及应用

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摘要

Furaneol is an aroma compound which occurs naturally in foods and is used as an artificial flavor. Detection of furaneol is required in food science and food processing industry. Capture- Systematic Evolution of Ligands by EXponential enrichment (SELEX) protocol was applied for the isolation of an aptamer binding to furaneol, a small volatile organic substance contributing to the flavor of various products. Thirteen cycles of selection were performed. The resulting DNA pool was cloned, using blunt-end cloning, and ninety-six plasmids were sequenced and analyzed. Eight oligonucleotides were selected as aptamer candidates and screened for the ability to bind to furaneol, using three different methods—magnetic-beads associated elution assay, SYBR Green I assay, and exonuclease protection assay. One of the candidates was further characterized as an aptamer. The apparent equilibrium constant was determined to be (1.1 ± 0.4) µM, by the fluorescent method. The reported aptamer was applied for development of the ion-sensitive field-effect transistor (ISFET)-based biosensor, for the analysis of furaneol, in the concentration range of 0.1–10 µM.
机译:呋喃酚是一种天然存在于食品中的芳香化合物,被用作人造香料。食品科学和食品加工行业需要检测呋喃酚。通过指数富集(SELEX)协议捕获配体的系统进化被用于分离与呋喃酚结合的适体,呋喃酚是一种微小的挥发性有机物质,有助于各种产品的风味。进行了13个选择周期。使用平末端克隆法克隆得到的DNA库,对96个质粒进行测序和分析。使用三种不同的方法(磁珠相关洗脱测定,SYBR Green I测定和核酸外切酶保护测定),选择了8个寡核苷酸作为适体候选物,并筛选了与呋喃醇的结合能力。其中一位候选人进一步被描述为适体。通过荧光法测定表观平衡常数为(1.1±0.4)μM。报道的适体被用于开发基于离子敏感场效应晶体管(ISFET)的生物传感器,用于呋喃酚的分析,浓度范围为0.1–10 µM。

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