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Immune-microassay with optical proteinchip for protein detection

机译:带有光学蛋白质芯片的免疫微量测定法用于蛋白质检测

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An optical proteinchip upon antigen-antibody affinity and the chip analysis system have been used in immune analysis. The chip is processed with chip design, surface patterning, surface modification, ligand immobilization to form a microarray with many immune probes-one kind of antigen (or antibody) occupying one unit in the microarray and many such units in matrix. In microreactor of bio-molecule interaction, when ligand met its receptor, they would bind into bio-specific complex, which resulted in the thickness of the probe surface layer (surface concentration of antigen-antibody) increasing. The variation of protein pattern on the chip surface corresponding to the ligand immobilization and protein interactions was screened with optical imaging ellipsometry. A nonlabeling microassay for protein detection was realized with antigen-antibody affinity and nondisturbance optical sampling, which was available for the direct test of crude samples, such as serum, etc. Some application results in immune analysis were presented also.
机译:基于抗原-抗体亲和力的光学蛋白芯片和芯片分析系统已用于免疫分析。芯片经过芯片设计,表面构图,表面修饰,配体固定处理,形成具有许多免疫探针的微阵列-一种抗原(或抗体)在微阵列中占据一个单元,在基质中占据许多这样的单元。在生物分子相互作用的微反应器中,当配体遇到其受体时,它们会结合到生物特异性复合物中,从而导致探针表面层的厚度(抗原-抗体的表面浓度)增加。用光学椭圆偏振成像法筛选了对应于配体固定化和蛋白质相互作用的芯片表面蛋白质图案的变化。通过抗原抗体亲和力和无干扰光学采样实现了蛋白质检测的非标记微量分析,可用于直接检测血清等粗样品。还提出了在免疫分析中的一些应用结果。

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