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DISSOLUTION ENHANCING TIME-RESOLVED FLUORESCENCE IMMUNOASSAY FOR RARE EARTH NANO MATERIAL

机译:稀土纳米材料的溶解度提高了时间分辨荧光免疫测定

摘要

This invention relates to a rare earth nanomaterial labeled biomolecule, its labeling method and a dissolution-enhanced time-resolved fluoroimmunoassay based on the rare earth nanomaterial. The rare earth nanomaterial serves as a label having stable properties, large specific surface area, strong modifiability, low-cost and thousands of lanthanide ions contained in each nanocrystal, the labeling ratio of rare earth ions can be greatly improved. Furthermore, the rare earth nanomaterial can be less affected by exogenous rare earth ions, unaffected by anticoagulants, and has broader applicability; after the immune complex was formed by labeling the biomolecules with the nanomaterial containing rare earth, an enhancer solution was added to allow the rare earth nanomaterial to dissolve into the rare earth ions, which can in turn form new signaling molecules with the chelates in the enhancer solution to induce intramolecular and intermolecular energy transfer, thereby significantly increasing fluorescence intensity by about a million times to greatly enhance the detection sensitivity by using time-resolved fluorescence assay.
机译:稀土纳米材料标记的生物分子,其标记方法和基于稀土纳米材料的溶解度提高的时间分辨荧光免疫测定法技术领域本发明涉及一种稀土纳米材料标记的生物分子,其标记方法和基于稀土纳米材料的溶出度提高的时间分辨荧光免疫测定法。稀土纳米材料作为具有稳定的性能,大的比表面积,强的可修饰性,低成本以及每个纳米晶体中包含数千种镧系元素离子的标记物,可以大大提高稀土离子的标记率。此外,稀土纳米材料受外源稀土离子的影响较小,不受抗凝剂的影响,具有广泛的适用性。通过用含稀土的纳米材料标记生物分子形成免疫复合物后,添加增强剂溶液以使稀土纳米材料溶解到稀土离子中,从而可以与增强剂中的螯合物形成新的信号分子溶液诱导分子内和分子间的能量转移,从而通过使用时间分辨荧光测定法将荧光强度显着提高约一百万倍,从而大大提高检测灵敏度。

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