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Self-assembled quantum dot microstructure guided by a microemulsion approach for immunoassays

机译:由免疫测定的微乳液方法引导自组装量子点微观结构

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摘要

Quantum dot microstructures were fabricated through a convenient microemulsion approach in this study. A polymer solution containing a stabilizer was mixed with a quantum dot aqueous solution, to prepare a reversed microemulsion, through shaking. Then, the microemulsion was cast on a solid substrate followed by evaporating steps, resulting in the formation of an ordered porous film. Interestingly, the quantum dot microstructure can be produced at the same time. The immunoassay experiment could be realized by the fluorescent microstructures. The green fluorescence microstructure specifically bound with antigens marked with red color quantum dots, resulting in the enhancement of red fluorescence domains and the decrease of green fluorescence. With the addition of unlabeled antigens, the green fluorescence microstructure was recovered. This strategy implies that the quantum dot pattern has potential on biochip, biosensor, and imaging analysis.
机译:通过本研究中的一种方便的微乳液方法制造量子点微结构。 将含有稳定剂的聚合物溶液与量子点水溶液混合,以通过摇动制备反向微乳液。 然后,将微乳液浇铸在固体基材上,然后蒸发步骤,导致形成有序的多孔膜。 有趣的是,可以同时生产量子点微结构。 可通过荧光组织实现免疫测定实验。 绿色荧光微结构与标有红颜色量子点标记的抗原,导致红色荧光域的增强和绿色荧光的降低。 随着未标记的抗原的添加,回收绿色荧光微观结构。 该策略意味着量子点图案具有Biochip,生物传感器和成像分析的潜力。

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    《RSC Advances》 |2019年第46期|共5页
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  • 正文语种 eng
  • 中图分类 化学;
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