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Responsive Inverse Opal Hydrogels for the Sensing of Macromolecules

机译:响应式反蛋白石水凝胶对高分子的感知

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Dual responsive inverse opal hydrogels were designed as autonomous sensor systems for (bio)macromolecules, exploiting the analyte-induced modulation of the opal's structural color. The systems that are based on oligo(ethylene glycol) macromonomers additionally incorporate comonomers with various recognition units. They combine a coil-to-globule collapse transition of the LCST type with sensitivity of the transition temperature toward molecular recognition processes. This enables the specific detection of macromolecular analytes, such as glycopolymers and proteins, by simple optical methods. While the inverse opal structure assists the effective diffusion even of large analytes into the photonic crystal, the stimulus responsiveness gives rise to strong shifts of the optical Bragg peak of more than 100nm upon analyte binding at a given temperature. The systems' design provides a versatile platform for the development of easy-to-use, fast, and low-cost sensors for pathogens.
机译:双响应反蛋白石水凝胶被设计为(生物)大分子的自主传感器系统,利用了分析物诱导的蛋白石结构颜色的调制。基于低聚(乙二醇)大分子单体的系统还结合了带有各种识别单元的共聚单体。它们将LCST类型的线圈到球的塌陷过渡与过渡温度对分子识别过程的敏感性结合在一起。这样可以通过简单的光学方法特异性检测大分子分析物,例如糖聚合物和蛋白质。反蛋白石结构有助于甚至将大型分析物有效地扩散到光子晶体中,但在给定温度下,当样品与分析物结合时,刺激响应会导致超过100nm的光学布拉格峰发生强烈位移。该系统的设计为开发用于病原体的易于使用,快速且低成本的传感器提供了一个通用平台。

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