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基于金纳米簇的荧光传感器用于生物分子的和比率成像。

Gold nanocluster-based fluorescent sensors for and ratiometric imaging of biomolecules.

机构信息

Department of Chemistry, National Sun Yat-sen University, No. 70, Lien-hai Road, Gushan District, Kaohsiung 80424, Taiwan.

Department of Environmental Engineering, Da-Yeh University, No. 168, University Rd., Dacun, Changhua 515006, Taiwan.

出版信息

Phys Chem Chem Phys. 2023 Aug 23;25(33):21787-21801. doi: 10.1039/d3cp02714g.

Abstract

Gold nanoclusters (AuNCs) are promising nanomaterials for ratiometric fluorescent probes due to their tunable fluorescence wavelengths dependent on size and structure, as well as their biocompatibility and resistance to photobleaching. By incorporating an additional fluorescence spectral peak, dual-emission AuNC-based fluorescent probes have been developed to enhance the signal output reproducibility. These probes can be fabricated by integrating various luminescent nanomaterials with AuNCs. This review focuses on the preparation methods and applications of ratiometric fluorescent probes derived from AuNCs and other fluorescent nanomaterials or fluorescent dyes for both and bioimaging of target analytes. Additionally, the review delves into the sensing mechanisms of AuNC-based ratiometric probes, their synthetic strategies, and the challenges encountered when using AuNCs for ratiometric bioimaging. Moreover, we explore the application of protein-stabilized AuNCs and thiolate-capped AuNC-based ratiometric fluorescent probes for biosensing and bioimaging. Two primary methods for assembling AuNCs and fluorophores into ratiometric fluorescent probes are discussed: triggered assembly and self-assembly. Finally, we address the challenges and issues associated with ratiometric bioimaging using AuNCs and propose future directions for further advancing AuNCs as ratiometric imaging agents.

摘要

金纳米簇 (AuNCs) 是一种很有前途的比率荧光探针纳米材料,因为它们的荧光波长可以根据尺寸和结构进行调节,同时具有生物相容性和抗光漂白性。通过引入额外的荧光光谱峰,可以开发出双发射 AuNC 基荧光探针,以提高信号输出的重现性。这些探针可以通过将各种发光纳米材料与 AuNCs 集成来制备。本综述重点介绍了源自 AuNCs 和其他荧光纳米材料或荧光染料的比率荧光探针的制备方法和应用,用于和 生物成像目标分析物。此外,该综述深入探讨了基于 AuNC 的比率探针的传感机制、它们的合成策略以及在使用 AuNC 进行比率生物成像时遇到的挑战。此外,我们还探讨了蛋白质稳定的 AuNC 和硫醇封端的 AuNC 基比率荧光探针在生物传感和生物成像中的应用。讨论了将 AuNC 和荧光团组装成比率荧光探针的两种主要方法:触发组装和自组装。最后,我们解决了使用 AuNC 进行比率生物成像相关的挑战和问题,并提出了进一步推进 AuNC 作为比率成像剂的未来方向。

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