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Self-assembly of the polymer brush-grafted silica colloidal array for recognition of proteins

机译:用于识别蛋白质的聚合物刷草覆膜二氧化硅胶体阵列的自组装

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摘要

Three-dimensional photonic crystal sensors are attractive platforms for autonomous chemical sensing and colorimetric bioassays. At present, the photonic crystal sensors with inverse opal structure were extensively studied, which swells or shrinks in response to the analytes. However, the fabrication of inverse opal sensors still remains a major challenge. Herein, we propose a simple and versatile approach to fabricate 3D opal photonic sensors. This photonic crystal is fabricated via assembly of monodispersed silica particles grafted with linear polymeric ligands (SiO2@LPs). Acrylic acid (negatively charged monomer) and N-tert-butylacrylamide (hydrophobic monomer) were incorporated with N-isopropylacrylamide to achieve strong affinity between the designed polymer ligands and proteins. The proposed photonic crystal displays a maximum redshift of 23 nm in response to 2 mg/mL lysozyme, accompanied by the structure color change from blue to green. Compared to the cross-linked polymers, the linear polymer with flexible structure allows the colloidal array to recognize lysozyme with higher sensitivity (as low as 5 mu g/mL) and broader linearity (from 5 to 2000 mu g/mL in aqueous media). In the future, this photonic crystal sensor can be used as universal tools for the detection of a broad range of analytes.
机译:三维光子晶体传感器是自主化学传感和比色生物测量的有吸引力的平台。目前,广泛地研究了具有反蛋白石结构的光子晶体传感器,其响应于分析物溶胀或收缩。然而,反蛋白石传感器的制造仍然是一个重大挑战。这里,我们提出了一种简单而多功能地制造3D蛋白石光子传感器的方法。该光子晶体通过组装用线性聚合物配体接枝的单分散二氧化硅颗粒(SiO 2 @ LPS)制造。丙烯酸(带负电荷的单体)和N-叔丁基丙烯酰胺(疏水式单体)掺入N-异丙基丙烯酰胺中,以在设计的聚合物配体和蛋白质之间实现强的亲和力。所提出的光子晶体显示出响应于2mg / ml溶菌酶的最大红移,响应于2mg / ml溶菌酶,伴随着从蓝色到绿色的结构颜色变化。与交联聚合物相比,具有柔性结构的线性聚合物允许胶体阵列识别具有更高敏感性(低至5μg/ ml)和更广泛的线性度(在水性介质中的5至2000μg/ ml的溶菌酶) 。在未来,该光子晶体传感器可用作用于检测广泛的分析物的通用工具。

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