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Surface plasmon resonance imaging for affinity-based sensing: An analytical approach

机译:用于基于亲和力传感的表面等离子体共振成像:一种分析方法

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Surface Plasmon Resonance imaging (SPRi) is at the forefront of optical sensing, allowing multi-analyte detection in real-time and without labeling. SPRi is applied to a variety of bio-interactions, from proteins to sensitive DNA detection. Despite the high number of recently appeared papers, very few deal with analyte detection in complex matrices. We here report SPRi affinity-based sensing with application to analytes detection in real matrices, i.e. proteins and DNA marker sequences for possible applications in different fields. In particular, we quantified Bovine IgG in cow milk avoiding matrix pre-treatments, and showing the simultaneous evaluation of different immobilization chemistries on a single biochip. We summarize results obtained in terms of perspectives for a real application of the biosensor in the field of food controls. About the detection of DNA sequences in complex matrices, we focused on DNA sequences in human transgenic cells for gene doping controls. Experimental results are briefly showed here in terms of advantages related to the application of SPRi technique to this emerging issue.
机译:表面等离子体共振成像(SPRi)处于光学传感的最前沿,可实时进行多分析物检测而无需标记。 SPRi被应用于从蛋白质到敏感DNA检测的各种生物相互作用。尽管最近出现了大量论文,但很少涉及复杂基质中的分析物检测。我们在此报告了基于SPRi亲和力的传感技术,可应用于实际基质中的分析物检测,即蛋白质和DNA标记序列,可在不同领域中应用。特别是,我们对牛奶中的牛IgG进行了定量,避免了基质预处理,并显示了在单个生物芯片上同时评估不同固定化化学试剂的效果。我们总结了在生物传感器在食品控制领域中的实际应用的观点所获得的结果。关于复杂基质中DNA序列的检测,我们专注于人类转基因细胞中用于基因掺杂控制的DNA序列。在此方面,就将SPRi技术应用于该新兴问题的相关优势,简要展示了实验结果。

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