Department of Biotechnology, University of Turku, Medisiina D6, Kiinamyllynkatu 10, 20520, Turku, Finland.
Nano-Science Center, Department of Chemistry, University of Copenhagen, Universitetsparken 5, 2100, Copenhagen, Denmark.
Chemistry. 2018 Jul 2;24(37):9229-9233. doi: 10.1002/chem.201801962. Epub 2018 Jun 7.
Fluorescence correlation and cross-correlation spectroscopy (FCS/FCCS) have enabled biologists to study processes of transport, binding, and enzymatic reactions in living cells. However, applying FCS and FCCS to samples such as whole blood and plasma is complicated as the fluorescence bursts of diffusing labels can be swamped by strong autofluorescence. Here we present cross-correlation spectroscopy based on two upconversion nanoparticles emitting at different wavelengths on the anti-Stokes side of a single excitation laser. This upconversion cross-correlation spectroscopy (UCCS) approach allows us to completely remove all Stokes shifted autofluorescence background in biological material such as plasma. As a proof of concept, we evaluate the applicability of UCCS to a homogeneous sandwich immunoassay for thyroid stimulating hormone measured in buffer solution and in plasma.
荧光相关和交叉相关光谱学(FCS/FCCS)使生物学家能够研究活细胞中的运输、结合和酶反应过程。然而,将 FCS 和 FCCS 应用于全血和血浆等样本时会变得复杂,因为扩散标记的荧光爆发可能会被强烈的自发荧光淹没。在这里,我们提出了一种基于在单个激发激光的反斯托克斯侧发射不同波长的两个上转换纳米粒子的交叉相关光谱学。这种上转换交叉相关光谱学(UCCS)方法使我们能够完全去除生物材料(如血浆)中的所有斯托克斯转移自发荧光背景。作为概念验证,我们评估了 UCCS 在缓冲溶液和血浆中测量甲状腺刺激激素的均相夹心免疫测定中的适用性。