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Characterization of IFN-γ Detection and Electrochemical Proximity Assay by a Novel Multi-Parametric/Multimodal Spectroscopy Apparatus

机译:一种新型多量子/多模式光谱装置的IFN-γ检测和电化学近距离测定的表征

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Functional interfaces play a vital part in biosensing, which requires proper allocation, orientation, conformation, activities and stability to achieve high affinity and stability of the biomolecules. However, the characterization of functional interfaces is still challenging. Here, simultaneous measurement of Surface Plasmon Resonance, fluorescence, and electrochemistry has been demonstrated by a novel Multi-Parametric/Multimodal Spectroscopy Apparatus (MPMS). Using this system, the assembly of various functional interfaces, including aptamer-based IFN-γ detection, and Electrochemical Proximity Assay were characterized. MPMS enables simultaneous confirmation of binding events both quantitatively (number of events) and kinetically (speed) through SPR, fluorescence and electrochemistry, thus enhancing the power of interface characterization sensing techniques.
机译:功能界面在生物传感中发挥重要部分,这需要适当的分配,取向,构象,活性和稳定性,以实现生物分子的高亲和力和稳定性。然而,功能界面的表征仍然具有挑战性。这里,通过新型多参数/多模谱仪(MPMS)对表面等离子体共振,荧光和电化学的同时测量。使用该系统,表征了各种功能界面的组装,包括适体的IFN-γ检测和电化学邻近测定。 MPM可以通过SPR,荧光和电化学来同时确认定量(事件数量)和动力学(速度)的绑定事件,从而提高界面表征感测技术的功率。

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