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Sensors for Healthcare Monitoring - Proteins, Viruses and Blood-Group-Typing

机译:用于医疗保健监控的传感器-蛋白质,病毒和血型分型

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Molecular imprinting strategies could successfully be applied to bioanalytes of different dimensions, ranging from proteins, as insulin, to picornaviruses, Human-Rhino-Virus (HRV) or Foot-Mouth-Disease-Virus (FMDV) to cells, e.g. yeast-cells or even highly flexible erythrocytes. Blood cell surface patterning of pre-polymers could be achieved via coatings with selective recognition properties. Polymer layers coupled with mass-sensitive quartz crystal micro balances (QCMs) lead to a selective sensor system concerning blood group typing. Thus, blood groups A_1, A_2 and B can be distinguished by the imprinted layers acting as synthetic antibodies. Further development of synthetic receptor sites were realized by generating plastic replica of immunoglobulin-Y (IgY), resulting in an antibody-like structure integrated on the polymer surface. For this purpose nano-particles from polymers were imprinted with natural immunoglobulin. After removing the template these patterned particles were pressed in a pre-polymer resulting in a synthetic receptor having antibody properties. The sensitivity to the allergen sesame protein was even higher than to the natural analogue.
机译:分子印迹策略可以成功地应用于不同尺寸的生物分析物,范围从蛋白质(如胰岛素)到小核糖核酸病毒,人鼻病毒(HRV)或口蹄疫病毒(FMDV)到细胞等。酵母细胞或什至高度柔韧性的红细胞。预聚物的血细胞表面图案化可以通过具有选择性识别特性的涂层来实现。聚合物层加上对质量敏感的石英晶体微量天平(QCM),可形成涉及血型分型的选择性传感器系统。因此,血型A_1,A_2和B可以通过用作合成抗体的印迹层来区分。通过产生免疫球蛋白-Y(IgY)的塑料复制品,实现了合成受体位点的进一步发展,从而在聚合物表面上整合了抗体样结构。为此目的,将来自聚合物的纳米颗粒印上天然免疫球蛋白。除去模板后,将这些图案化的颗粒压入预聚物中,得到具有抗体特性的合成受体。对过敏原芝麻蛋白的敏感性甚至高于对天然类似物的敏感性。

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