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MgF2-Au-MgF2-polydopamine based surface plasmon resonance sensor and its application in biomedical systems

机译:基于MgF2-Au-MgF2-聚多巴胺的表面等离子体共振传感器及其在生物医学系统中的应用

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We report a MgF2-Au-MgF2-polydopamine based surface plasmon resonance (SPR) sensor and its biomedical applications. The symmetrical MgF2-Au-MgF2 geometry induced a minimum loss of surface plasmons leading to, so far, the best refractive index resolution of 2.2 × 10~(-8) refractive index units (RIU) in a glucose solution protocol. Meanwhile, a high detection performance could be maintained in the sensed medium with a refractive index ranging from 1.03 to 1.33 RIU. In order to solve the problem of surface functionalization on MgF2, which was thought to be inert, we managed to form adherent polydopamine films onto the MgF2-Au-MgF2 surface by dopamine self-polymerization, and found that secondary reactions could be used to create a variety of ad-layers for further biological uses. Finally, a model experiment on a chip detecting cellular mediators in human aqueous humor demonstrated the biomedical application of this system.
机译:我们报告基于MgF2-Au-MgF2-聚多巴胺的表面等离子体共振(SPR)传感器及其生物医学应用。对称的MgF2-Au-MgF2几何形状引起表面等离激元的最小损失,从而导致迄今为止在葡萄糖溶液方案中具有2.2×10〜(-8)折射率单位(RIU)的最佳折射率分辨率。同时,在感测介质中可以保持高检测性能,折射率在1.03至1.33 RIU范围内。为了解决被认为是惰性的MgF2的表面功能化问题,我们设法通过多巴胺自聚合在MgF2-Au-MgF2表面上形成粘附的聚多巴胺薄膜,并发现可以使用次级反应来产生用于进一步生物学用途的各种广告层。最后,在检测人房水中细胞介体的芯片上进行的模型实验证明了该系统的生物医学应用。

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