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Microarray preparation based on oxidation of agarose-gel and subsequent enzyme immunoassay

机译:基于琼脂糖凝胶氧化的微阵列制备及随后的酶免疫测定

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Based on molecular assembly technique, a thin film with double functions was prepared by using agarose gel as matrix on surfaces of glass slides. This process involved drying, then oxidation with NaIO_4 and subsequent coupling with glutaraldehyde. The aldehyde groups, derived from the film of the gel-matrix, could covalently link with the amino-groups in the molecule of various antigens (e.g. recombinant peptide, phospholipid, DNA), horseradish peroxydase and antibodies through formation of Schiff's bases. AFM characterization and assay results demonstrated that the gel assembly film was a surface of three-dimensional structure, and had a higher capacity for protein loading and linking than that of two-dimensional surfaces. In the light of the above principles, a biomolecular microarray was generated on this surface. By optimizing 100 mgA was chosen as the concentration and 50 nl as the volume for spotting samples of diversified biomolecules. The enzyme-immunoassay system on the surface of gel-matrix by which the interactions of antigen-antibody and enzyme-substrate molecules were detected sensitively and specifically, was successfully developed by various experimental set-ups. The two main distinct advantages of the microchip are: (a) saving on volume of specimen and reagent, and (b) simultaneous analysis for multi-autoantibodies. Since the enzyme-substrate (HRP-DAB-H_2O_2) was used as the display system of signals from the microchip, the results were directly visible and more stable in comparison with fluorescent immunoassay.
机译:基于分子组装技术,以琼脂糖凝胶为载玻片表面的基质制备了具有双重功能的薄膜。该过程涉及干燥,然后用NaIO 4氧化并随后与戊二醛偶联。源自凝胶基质膜的醛基可通过形成席夫氏碱与各种抗原(例如重组肽,磷脂,DNA),辣根过氧化物酶和抗体分子中的氨基共价连接。 AFM表征和分析结果表明,凝胶组装膜是三维结构的表面,并且具有比二维表面更高的蛋白质负载和连接能力。根据上述原理,在该表面上产生了生物分子微阵列。通过优化,选择100 mgA的浓度,选择50 nl的体积来点样多样化的生物分子样品。通过各种实验装置成功开发了凝胶基质表面上的酶免疫测定系统,通过该系统可以灵敏地检测抗原-抗体与酶-底物分子之间的相互作用。微芯片的两个主要不同优势是:(a)节省了标本和试剂的体积,以及(b)同时分析了多种自身抗体。由于酶底物(HRP-DAB-H_2O_2)被用作微芯片信号的显示系统,因此与荧光免疫分析法相比,结果是直接可见的,并且更加稳定。

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