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Transition metal complexes based aptamers as optical diagnostic tools for disease proteins and biomolecules

机译:基于过渡金属配合物的适体作为疾病蛋白和生物分子的光学诊断工具

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Aptamers are powerful recognition elements that can bind a large number of target molecules, including metal ions, small molecules, proteins, enzymes, even complex targets like cancer cells, etc., with high affinity and specificity. Hence, aptamer-based biosensors (hereafter named "aptasensors") have been extensively utilized in the field of clinical diagnostics and biomedical applications. In contrast to organic luminophores and quantum dots, luminescent transition metal complexes offer many desirable and wide-ranging properties, including tunable emission throughout the visible to NIR regions, long lifetime with a large Stockes shift, high quantum yield, good thermal, chemical and photochemical stability and metabolic inertness for biosensing applications. The incorporation of biomolecules or lipophilic entities into the metal complexes could overcome problems associated with membrane permeability and uptake by cells. Especially, Ru(II) and Ir(III) complexes are promising candidates for these potential applications. This review describes an overview of recent progress in the emerging area of aptasensors utilizing Ru(II) and Ir(III) transition metal complexes. To date, though aptasensors have been used in a wide variety of detection techniques, we have focused mainly on the luminescence approach in this article. Numerous aptasensors have illustrated promising detection results, even in complicated biological environments. If more rigorous research is continued on this area, it is hoped that in the future transition metal complexes based aptamers may show tremendous applications in biomedical research, especially diagnostics, imaging and drug delivery. (C) 2018 Elsevier B.V. All rights reserved.
机译:适体是强大的识别元件,可以以高亲和力和特异性结合大量靶分子,包括金属离子,小分子,蛋白质,酶,甚至是诸如癌细胞等复杂靶标。因此,基于适体的生物传感器(以下称为“适体传感器”)已广泛用于临床诊断和生物医学应用领域。与有机发光体和量子点相比,发光过渡金属配合物具有许多理想且范围广泛的特性,包括在可见光到近红外区域内可调节的发射,寿命长,Stockes位移大,量子产率高,热,化学和光化学性能佳用于生物传感应用的稳定性和代谢惰性。将生物分子或亲脂性实体结合到金属络合物中可以克服与膜渗透性和细胞摄取有关的问题。特别是,Ru(II)和Ir(III)配合物是这些潜在应用的有前途的候选物。这篇综述描述了利用Ru(II)和Ir(III)过渡金属配合物的适体传感器新兴领域的最新进展。迄今为止,尽管适体传感器已用于多种检测技术中,但本文中我们主要集中于发光方法。即便在复杂的生物环境中,许多适体传感器也显示出令人鼓舞的检测结果。如果在这一领域上继续进行更严格的研究,则希望将来基于过渡金属配合物的适体可能在生物医学研究中显示出巨大的应用,尤其是诊断,成像和药物输送。 (C)2018 Elsevier B.V.保留所有权利。

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