NanoBioPhotonics, Institute for Integrative Biology of the Cell (I2BC) , Université Paris-Saclay, Université Paris-Sud, CNRS, CEA , 91400 Orsay , France.
Department of Medical Physics and Biomedical Engineering , University College London , WC1E 6BT London , United Kingdom.
Bioconjug Chem. 2018 Jun 20;29(6):2082-2089. doi: 10.1021/acs.bioconjchem.8b00296. Epub 2018 Jun 6.
Quantum dots (QDs) are not only advantageous for color-tuning, improved brightness, and high stability, but their nanoparticle surfaces also allow for the attachment of many biomolecules. Because IgG antibodies (AB) are in the same size range of biocompatible QDs and the AB orientation after conjugation to the QD is often random, it is difficult to predict if few or many AB per QD will lead to an efficient AB-QD conjugate. This is particularly true for homogeneous Förster resonance energy transfer (FRET) sandwich immunoassays, for which the AB on the QD must bind a biomarker that needs to bind a second AB-FRET-conjugate. Here, we investigate the performance of Tb-to-QD FRET immunoassays against total prostate specific antigen (TPSA) by changing the number of AB per QD while leaving all the other assay components unchanged. We first characterize the AB-QD conjugation by various spectroscopic, microscopic, and chromatographic techniques and then quantify the TPSA immunoassay performance regarding sensitivity, limit of detection, and dynamic range. Our results show that an increasing conjugation ratio leads to significantly enhanced FRET immunoassays. These findings will be highly important for developing QD-based immunoassays in which the concentrations of both AB and QDs can significantly influence the assay performance.
量子点 (QDs) 不仅在颜色调谐、提高亮度和高稳定性方面具有优势,而且其纳米粒子表面还允许连接许多生物分子。由于 IgG 抗体 (AB) 的大小与生物相容的 QD 相近,并且在与 QD 缀合后 AB 的取向通常是随机的,因此很难预测每 QD 上的少数或多数 AB 是否会导致有效的 AB-QD 缀合物。对于均相Förster 共振能量转移 (FRET) 夹心免疫测定尤其如此,因为 QD 上的 AB 必须结合需要结合第二个 AB-FRET 缀合物的生物标志物。在这里,我们通过改变每 QD 的 AB 数量,同时保持其他所有测定成分不变,研究了 Tb 到 QD FRET 免疫测定针对总前列腺特异性抗原 (TPSA) 的性能。我们首先通过各种光谱、显微镜和色谱技术来表征 AB-QD 缀合,然后定量测定 TPSA 免疫测定的灵敏度、检测限和动态范围。我们的结果表明,缀合比的增加会导致 FRET 免疫测定显著增强。这些发现对于开发基于 QD 的免疫测定非常重要,其中 AB 和 QD 的浓度会显著影响测定性能。