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FRET-Based Quantum Dot Immunoassay for Rapid and Sensitive Detection of Aspergillus amstelodami

机译:基于FRET的量子点免疫测定法可快速灵敏地检测Amstelodami曲霉

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摘要

In this study, a fluorescence resonance energy transfer (FRET)-based quantum dot (QD) immunoassay for detection and identification of Aspergillus amstelodami was developed. Biosensors were formed by conjugating QDs to IgG antibodies and incubating with quencher-labeled analytes; QD energy was transferred to the quencher species through FRET, resulting in diminished fluorescence from the QD donor. During a detection event, quencher-labeled analytes are displaced by higher affinity target analytes, creating a detectable fluorescence signal increase from the QD donor. Conjugation and the resulting antibody:QD ratios were characterized with UV-Vis spectroscopy and QuantiT protein assay. The sensitivity of initial fluorescence experiments was compromised by inherent autofluorescence of mold spores, which produced low signal-to-noise and inconsistent readings. Therefore, excitation wavelength, QD, and quencher were adjusted to provide optimal signal-to-noise over spore background. Affinities of anti-Aspergillus antibody for different mold species were estimated with sandwich immunoassays, which identified A. fumigatus and A. amstelodami for use as quencher-labeled- and target-analytes, respectively. The optimized displacement immunoassay detected A. amstelodami concentrations as low as 103 spores/mL in five minutes or less. Additionally, baseline fluorescence was produced in the presence of 105 CFU/mL heat-killed E. coli O157:H7, demonstrating high specificity. This sensing modality may be useful for identification and detection of other biological threat agents, pending identification of suitable antibodies. Overall, these FRET-based QD-antibody biosensors represent a significant advancement in detection capabilities, offering sensitive and reliable detection of targets with applications in areas from biological terrorism defense to clinical analysis.
机译:在这项研究中,开发了一种基于荧光共振能量转移(FRET)的量子点(QD)免疫测定法,用于检测和鉴定双歧曲霉。通过将QD与IgG抗体缀合并与淬灭剂标记的分析物一起孵育来形成生物传感器。 QD能量通过FRET传递给淬灭剂,导致QD供体的荧光减弱。在检测过程中,淬灭剂标记的分析物被较高亲和力的目标分析物所取代,从而使QD供体产生可检测到的荧光信号增加。通过UV-Vis光谱和QuantiT蛋白测定来表征缀合和所得抗体:QD比。最初的荧光实验的灵敏度受到霉菌孢子固有的自发荧光的影响,这会产生低信噪比和不一致的读数。因此,调整了激发波长,QD和猝灭剂,以在孢子背景上提供最佳的信噪比。用夹心免疫测定法估计抗曲霉抗体对不同霉菌种的亲和力,该夹心免疫测定法鉴定了烟曲霉和amstelodami分别用作淬灭剂标记的和靶标的分析物。优化的置换免疫分析法可在5分钟或更短时间内检测到Amstelodami孢子浓度低至10 3 / mL。此外,在10 5 CFU / mL热灭活的大肠杆菌O157:H7的存在下产生了基线荧光,表明具有很高的特异性。在识别合适的抗体之前,这种感测方式可用于识别和检测其他生物威胁因子。总体而言,这些基于FRET的QD抗体生物传感器代表了检测能力的重大进步,可提供从生物恐怖主义防御到临床分析等领域的灵敏,可靠的目标检测。

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