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Near-Infrared Dyes and Upconverting Phosphors as Biomolecule Labels and Probes

机译:近红外染料和上转换荧光粉作为生物分子标记和探针

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Near-Infrared (NIR) absorbing chromophores have been used in analytical and bioanalytical chemistry extensively, including for determination of properties of biomolecules, DNA sequencing, immunoassays, capillary electrophoresis (CE) separations, etc. The major analytical advantages of these dyes are low background interference and high molar absorptivities. NIR dyes have additional advantages due to their sensitivity to microenvironmental changes. Spectral changes induced by the microenvironment are not desirable if the labels are used as a simple reporting group, e.g., during a biorecognition reaction. For these applications upconverting phosphors seem to be a better choice. There are several difficulties in utilizing upconverting phosphors as reporting labels. These are: large physical size, no reactive groups and insolubility in aqueous systems. This presentation will discuss how these difficulties can be overcome for bioanalytical and forensic applications. During these studies we also have investigated how to reduce physical size of the phosphor by simple grinding without losing activity and how to attach reactive moiety to the phosphor to covalently bind to the biomolecule of interest. It has to be emphasized that the described approach is not suitable for medical applications and the results of this research are not applicable in medical applications. For bioanalytical and forensic applications upconverting phosphors used as reporting labels have several advantages. They are excited with lasers that are red shifted respective to phosphorescence, resulting in no light scatter issues during detection. Also some phosphors are excited using eye safe lasers. In addition energy transfer to NIR dyes is possible, allowing detection schemes using donor-acceptor pairs. Data is presented to illustrate the feasibility of this phenomenon. If microenvironmental sensitivity is required, then specially designed NIR dyes can be used as acceptor labels. Several novel dyes have been synthesized in our laboratories for that purpose.
机译:吸收近红外(NIR)的生色团已广泛用于分析和生物分析化学,包括用于确定生物分子的性质,DNA测序,免疫分析,毛细管电泳(CE)分离等。这些染料的主要分析优势是背景低干扰和高摩尔吸收率。 NIR染料由于对微环境变化的敏感性而具有其他优势。如果标记被用作简单的报告基团,例如在生物识别反应期间,则微环境诱导的光谱变化是不希望的。对于这些应用,上转换磷光体似乎是一个更好的选择。利用上转换磷光体作为报告标记存在若干困难。它们是:物理尺寸大,没有反应性基团,在水性体系中不溶。本演讲将讨论如何在生物分析和法医应用中克服这些困难。在这些研究中,我们还研究了如何通过简单研磨来减小磷光体的物理尺寸而又不损失活性,以及​​如何将反应性部分连接到磷光体上以共价结合所需的生物分子。必须强调的是,所描述的方法不适用于医学应用,并且该研究的结果不适用于医学应用。对于生物分析和法医应用,用作报告标记的上转换磷光体具有多个优点。它们被相应于磷光红移的激光激发,从而在检测过程中没有光散射问题。另外,使用人眼安全的激光可以激发一些荧光粉。另外,可以将能量转移到NIR染料上,从而允许使用供体-受体对进行检测。提供数据来说明这种现象的可行性。如果需要微环境敏感性,则可以使用专门设计的NIR染料作为受体标记。为此目的,在我们的实验室中已经合成了几种新型染料。

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