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Poly(N-isopropylacrylamide) microgel-based etalons for the label-free quantitation of estradiol-17 beta in aqueous solutions and milk samples

机译:聚(N-异丙基丙烯酰胺)基于微凝胶的标准体,用于在水溶液和牛奶样品中的雌二醇-17β的无标记定量

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摘要

A novel estradiol-17 beta (E2) biosensor was constructed from poly(N-isopropylacrylamide) (pNIPAm) microgel-based etalons by modification of their outermost Au layer with an E2 binding 75-mer DNA aptamer. When E2 is not present in the solution, the aptamer forms a loose/linear structure that allows ions to pass through and into the microgel layer. The ions can change the solvation state of the microgels, which changes the optical properties of the etalon. When E2 is present in the solution, the aptamer binds the E2 and undergoes a conformational change to a form that can block the diffusion of salt ions into the microgel layer. This blocking decreases the response of the device to salt exposure, which can be related to the concentration of E2 in solution. Using this approach, E2 sensor showed a dynamic range of 0.9-200 pg/mL with a calculated detection limit of 0.9 pg/mL (3.2 pM) E2, and the lowest measured concentration of E2 is 5.0 pg/mL. This sensor also showed low cross reactivity with progesterone, a similar steroid hormone. Moreover, this sensor could be regenerated five times without losing its sensitivity. Finally, we demonstrated that the sensor could also be used to quantify E2 in commercial skim and 2% milk, as well as farm milk directly without any pre-treatment. The successful quantitation of E2 in unprocessed milk demonstrates its potential use as a "cow-side" testing device for the dairy industry.
机译:通过用E2结合75-MEL DNA适体改变它们的最外面的Au层,从聚(N-异丙基丙烯酰胺)(丙蛋白)微凝胶的标准体构成新的雌二醇-17β(E2)生物传感器。当溶液中不存在E2时,适体形成松散/线性结构,允许离子通过并进入微凝胶层。离子可以改变微凝胶的溶剂化状态,这改变了标准具的光学性质。当溶液中存在E2时,适体结合E2并经历构象变化,以阻断盐离子扩散到微凝胶层中。该阻断降低了装置对盐暴露的响应,其可以与溶液中E2的浓度有关。使用这种方法,E2传感器显示出0.9-200pg / ml的动态范围,计算的检测限为0.9pg / ml(3.2mP)E2,并且E2的最低测量浓度为5.0pg / ml。该传感器还显示出与孕酮,类似的类固醇激素的交叉反应性低。此外,该传感器可以再生五次而不会失去其灵敏度。最后,我们证明了传感器还可用于量化商业脱脂和2%牛奶中的E2,以及直接的农场乳,没有任何预处理。未加工牛奶中E2的成功定量表明其潜在用作乳制品行业的“牛侧”测试装置。

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