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关于荧光团的光物理性质及其在定制生物成像化合物中的应用:以 S100A9 炎症标志物为例的研究。

Concerning the photophysics of fluorophores towards tailored bioimaging compounds: a case study involving S100A9 inflammation markers.

机构信息

European Institute for Molecular Imaging, Westfälische Wilhelms-Universität Münster, Röntgenstraße 16, 48149, Münster, Germany.

Institut für Anorganische und Analytische Chemie, CiMIC, SoN, Westfälische Wilhelms-Universität Münster, Corrensstraße 28/30, 48149, Münster, Germany.

出版信息

Photochem Photobiol Sci. 2023 Sep;22(9):2093-2104. doi: 10.1007/s43630-023-00432-2. Epub 2023 Jun 11.

Abstract

A full understanding concerning the photophysical properties of a fluorescent label is crucial for a reliable and predictable performance in biolabelling applications. This holds true not only for the choice of a fluorophore in general, but also for the correct interpretation of data, considering the complexity of biological environments. In the frame of a case study involving inflammation imaging, we report the photophysical characterization of four fluorescent S100A9-targeting compounds in terms of UV-vis absorption and photoluminescence spectroscopy, fluorescence quantum yields (Φ) and excited state lifetimes (τ) as well as the evaluation of the radiative and non-radiative rate constants (k and k, respectively). The probes were synthesized based on a 2-amino benzimidazole-based lead structure in combination with commercially available dyes, covering a broad color range from green (6-FAM) over orange (BODIPY-TMR) to red (BODIPY-TR) and near-infrared (Cy5.5) emission. The effect of conjugation with the targeting structure was addressed by comparison of the probes with their corresponding dye-azide precursors. Additionally, the 6-FAM and Cy5.5 probes were measured in the presence of murine S100A9 to determine whether protein binding influences their photophysical properties. An interesting rise in Φ upon binding of 6-FAM-SST177 to murine S100A9 enabled the determination of its dissociation equilibrium constant, reaching up to K = 324 nM. This result gives an outlook for potential applications of our compounds in S100A9 inflammation imaging and fluorescence assay developments. With respect to the other dyes, this study demonstrates how diverse microenvironmental factors can severely impair their performance while rendering them poor performers in biological media, showing that a preliminary photophysical screening is key to assess the suitability of a particular luminophore.

摘要

全面了解荧光标记物的光物理性质对于生物标记应用中的可靠和可预测性能至关重要。这不仅适用于荧光团的一般选择,而且还适用于考虑到生物环境的复杂性,正确解释数据。在涉及炎症成像的案例研究中,我们报告了四个荧光 S100A9 靶向化合物的光物理特性,包括紫外可见吸收和光致发光光谱、荧光量子产率(Φ)和激发态寿命(τ)以及辐射和非辐射速率常数(k 和 k,分别)。探针是基于 2-氨基苯并咪唑基先导结构与市售染料结合合成的,涵盖了从绿色(6-FAM)到橙色(BODIPY-TMR)到红色(BODIPY-TR)和近红外(Cy5.5)发射的广泛颜色范围。通过比较探针与其相应的染料叠氮前体,研究了与靶向结构缀合的效果。此外,还测量了 6-FAM 和 Cy5.5 探针在存在鼠 S100A9 时的光物理性质,以确定蛋白质结合是否会影响它们的光物理性质。有趣的是,6-FAM-SST177 与鼠 S100A9 结合后 Φ 的升高使得能够确定其离解平衡常数,最高可达 K=324 nM。这一结果为我们的化合物在 S100A9 炎症成像和荧光测定发展中的潜在应用提供了展望。对于其他染料,本研究表明,各种微观环境因素如何严重损害它们的性能,使它们在生物介质中表现不佳,表明初步的光物理筛选是评估特定发光体适用性的关键。

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