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Gold nanoclusters with enhanced tunable fluorescence as bioimaging probes

机译:具有增强的可调荧光的金纳米簇作为生物成像探针

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Development of unique bioimaging probes offering essential information's about bio environments are an important step forward in biomedical science. Nanotechnology offers variety of novel imaging nanoprobes having high-photo stability as compared to conventional molecular probes which often experience rapid photo bleaching problem. Although great advances have been made on the development of semiconductor nanocrystals-based fluorescent imaging probes, potential toxicity issue by heavy metal component limits their in vivo therapeutic and clinical application. Recent works show that fluorescent gold clusters (FGCs) can be a promising nontoxic alternative of semiconductor nanocrystals. FGCs derived imaging nanoprobes offer stable and tunable visible emission, small hydrodynamic size, high biocompatibility and have been exploited in variety in vitro and in vivo imaging applications. In this review, we will focus on the synthetic advances and bioimaging application potentials of FGCs. In particular, we will emphasize on functional FGCs that are bright and stable enough to be useful as bioimaging probes.
机译:独特的生物成像探针的开发可提供有关生物环境的基本信息,这是生物医学科学向前迈出的重要一步。与经常遇到快速光漂白问题的常规分子探针相比,纳米技术提供了多种具有高光稳定性的新颖成像纳米探针。尽管在基于半导体纳米晶体的荧光成像探针的开发方面已经取得了很大的进步,但是重金属成分的潜在毒性问题限制了它们在体内的治疗和临床应用。最近的工作表明,荧光金簇(FGC)可以成为半导体纳米晶体的有希望的无毒替代品。 FGC衍生的成像纳米探针可提供稳定且可调的可见光发射,较小的流体动力学尺寸,较高的生物相容性,并且已在各种体外和体内成像应用中得到利用。在本文中,我们将重点关注FGC的合成进展和生物成像的应用潜力。特别是,我们将重点介绍功能明亮的FGC,它们足够稳定且可用作生物成像探针。

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