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用于生物成像的发光金纳米团簇:增加配体复杂性

Luminescent Gold Nanoclusters for Bioimaging: Increasing the Ligand Complexity.

作者信息

Mordini Dario, Mavridi-Printezi Alexandra, Menichetti Arianna, Cantelli Andrea, Li Xinke, Montalti Marco

机构信息

Department of Chemistry "Giacomo Ciamician", University of Bologna, Via Selmi 2, 40126 Bologna, Italy.

出版信息

Nanomaterials (Basel). 2023 Feb 7;13(4):648. doi: 10.3390/nano13040648.

Abstract

Fluorescence, and more in general, photoluminescence (PL), presents important advantages for imaging with respect to other diagnostic techniques. In particular, detection methodologies exploiting fluorescence imaging are fast and versatile; make use of low-cost and simple instrumentations; and are taking advantage of newly developed powerful, low-cost, light-based electronic devices, such as light sources and cameras, used in huge market applications, such as civil illumination, computers, and cellular phones. Besides the aforementioned simplicity, fluorescence imaging offers a spatial and temporal resolution that can hardly be achieved with alternative methods. However, the two main limitations of fluorescence imaging for bio-application are still (i) the biological tissue transparency and autofluorescence and (ii) the biocompatibility of the contrast agents. Luminescent gold nanoclusters (AuNCs), if properly designed, combine high biocompatibility with PL in the near-infrared region (NIR), where the biological tissues exhibit higher transparency and negligible autofluorescence. However, the stabilization of these AuNCs requires the use of specific ligands that also affect their PL properties. The nature of the ligand plays a fundamental role in the development and sequential application of PL AuNCs as probes for bioimaging. Considering the importance of this, in this review, the most relevant and recent papers on AuNCs-based bioimaging are presented and discussed highlighting the different functionalities achieved by increasing the complexity of the ligand structure.

摘要

荧光,更一般地说,光致发光(PL),相对于其他诊断技术在成像方面具有重要优势。特别是,利用荧光成像的检测方法快速且通用;使用低成本且简单的仪器;并且受益于新开发的强大、低成本的基于光的电子设备,如光源和相机,这些设备应用于巨大的市场领域,如民用照明、计算机和手机。除了上述简单性之外,荧光成像还提供了其他方法难以实现的空间和时间分辨率。然而,荧光成像在生物应用中的两个主要限制仍然是:(i)生物组织的透明度和自发荧光;(ii)造影剂的生物相容性。发光金纳米团簇(AuNCs),如果设计得当,在近红外区域(NIR)将高生物相容性与PL相结合,在该区域生物组织具有更高的透明度和可忽略不计的自发荧光。然而,这些AuNCs的稳定化需要使用特定的配体,而这些配体也会影响它们的PL性质。配体的性质在作为生物成像探针的PL AuNCs的开发和顺序应用中起着至关重要的作用。鉴于此的重要性,在本综述中,展示并讨论了关于基于AuNCs的生物成像的最相关和最新的论文,突出了通过增加配体结构的复杂性所实现的不同功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2a3/9960743/1d3ff9ae72b9/nanomaterials-13-00648-g001.jpg

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