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Using Simple-Structured Split Aptamer for Gold Nanoparticle-based Colorimetric Detection of Estradiol

机译:使用基于金纳米粒子的基于金纳米粒子的比色性检测使用简单结构的分离适体检测

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Demand for the detection of estradiol, which is a naturally occurring hormone, has been increasing. Gold nanoparticle-based colorimetric aptasensors have been developed for estradiol detection; however, the long sequence of aptamers due to the formation of the secondary structure likely affects the sensitivity of the aptasensors. Herein, a sensitive colorimetric biosensor is developed for label-free detection of estradiol by using an estradiol-specific split aptamer. The results demonstrate that a superior response is observed when a split aptamer with a high free energy of the secondary structure (ΔG > –3 kcal/mol) is used, in comparison to that observed using a split aptamer with a low free energy of the secondary structure (ΔG < –3 kcal/mol) at 27°C. After selecting the appropriate split aptamer, the standard calibration curve obtained for estradiol has a detection limit of 6.7 nM, with a linear range of 6.7 nM – 66.7 μM in the logarithmic scale. Furthermore, this assay is sensitive, easy-to-operate, inexpensive, and non-time-consuming (provides results within 50 min), thereby showing potential for clinical applications (detection of other small molecular targets).
机译:检测雌二醇的需求,即天然存在的激素,一直在增加。基于金纳米粒子基的比色可用于雌二醇检测;然而,由于次要结构的形成导致的长期序列可能影响Aptasensors的灵敏度。在此,通过使用雌二醇特异性分裂适体来开发敏感的比色生物传感器用于无标记检测雌二醇。结果表明,当使用具有低自由能量的分裂适体观察到的具有低自由型的具有高自由能量的分离适体(Δg> -3kcal / mol)时,观察到优异的响应。二级结构(ΔG<-3千卡/摩尔)在27℃。选择适当的分离适体,对雌二醇获得的标准校准曲线具有6.7nm的检出限,线性范围为6.7nm-66.7μm。此外,该测定敏感,易于操作,廉价,不耗时(在50分钟内提供结果),从而显示临床应用的可能性(检测其他小分子靶标)。

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