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A Possible Merge of FRET and SPR Sensing System for Highly Accurate and Selective Immunosensing

机译:FRET和SPR传感系统的可能合并,以实现高精度和选择性的免疫传感

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Immuno-sensing for high accurate and selective sensing was performed by fluorescence spectroscopy and surface plasmon resonance (SPR), respectively. Engineered assembly of two fluorescent quantum dots (QDs) with bovine serum albumin (BSA) and anti-BSA was fabricated in PBS buffer for fluorescence analysis of fluorescence resonance energy transfer (FRET). Furthermore, the same bio-moieties were immobilized on Au plates for SPR analysis. Naturally- driven binding affinity of immuno-moieties induced FRET and plasmon resonance angle shift in the nanoscale sensing system. Interestingly, the sensing ranges were uniquely different in two systems: e.g., SPR spectroscopy was suitable for highly accurate analysis to measure in the range of 10-15…-10 ng/mL while the QD fluorescent sensing system was relatively lower sensing ranges in 10-10…- 6 ng/mL. However, the QD sensing system was larger than the SPR sensing system in terms of sensing capacity per one specimen. It is, therefore, suggested that a mutual assistance of FRET and SPR combined sensing system would be a potentially promising candidate for high accuracy and reliable in situ sensing system of immune-related diseases.
机译:分别通过荧光光谱和表面等离振子共振(SPR)进行了用于高精度和选择性传感的免疫传感。在PBS缓冲液中制造了带有牛血清白蛋白(BSA)和抗BSA的两个荧光量子点(QD)的工程组装,用于荧光共振能量转移(FRET)的荧光分析。此外,将相同的生物部分固定在Au板上进行SPR分析。免疫部分的自然驱动结合亲和力在纳米级传感系统中诱导了FRET和等离振子共振角移动。有趣的是,在两个系统中,传感范围是唯一不同的:例如,SPR光谱适合进行高精度分析,测量范围为10 -15…-10 ng / mL,而QD荧光传感系统在10 -10…-6 ng / mL范围内相对较低。然而,就每一个样本的感测能力而言,QD感测系统大于SPR感测系统。因此,建议将FRET和SPR组合传感系统相互协助将是免疫相关疾病的高精度和可靠的原位传感系统的潜在前途候选者。

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