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半导体纳米板:用于细胞计量学和成像应用的新型超亮荧光探针。

Semiconductor Nanoplatelets: A New Class of Ultrabright Fluorescent Probes for Cytometric and Imaging Applications.

机构信息

LPEM, ESPCI Paris , PSL Research University, CNRS, Sorbonne-Universités , 75005 Paris , France.

Nexdot , 102 Avenue Gaston Roussel , 93230 Romainville , France.

出版信息

ACS Appl Mater Interfaces. 2018 Jul 25;10(29):24739-24749. doi: 10.1021/acsami.8b07143. Epub 2018 Jul 13.

Abstract

Fluorescent semiconductor nanoplatelets (NPLs) are a new generation of fluorescent probes. NPLs are colloidal two-dimensional materials that exhibit several unique optical properties, including high brightness, photostability, and extinction coefficients, as well as broad excitation and narrow emission spectra from the visible to the near-infrared spectrum. All of these exceptional fluorescence properties make NPLs interesting nanomaterials for biological applications. However, NPLs are synthesized in organic solvents and coated with hydrophobic ligands that render them insoluble in water. A current challenge is to stabilize NPLs in aqueous media compatible with biological environments. In this work, we describe a novel method to disperse fluorescent NPLs in water and functionalize them with different biomolecules for biodetection. We demonstrate that ligand exchange enables the dispersion of NPLs in water while maintaining optical properties and long-term colloidal stability in biological environments. Four different colors of NPLs were functionalized with biomolecules by random or oriented conformations. For the first time, we report that our NPLs have a higher brightness than that of standard fluorophores, like phycoerythrin or Brilliant Violet 650 (BV 650), for staining cells in flow cytometry. These results suggest that NPLs are an interesting alternative to common fluorophores for flow cytometry and imaging applications in multiplexed cellular targeting.

摘要

荧光半导体纳米盘(NPL)是新一代荧光探针。NPL 是胶体二维材料,具有几个独特的光学特性,包括高亮度、光稳定性和消光系数,以及从可见到近红外光谱的宽激发和窄发射光谱。所有这些优异的荧光特性使得 NPL 成为生物应用的有趣纳米材料。然而,NPL 是在有机溶剂中合成的,并涂覆有疏水性配体,使其不溶于水。目前的挑战是在与生物环境兼容的水相介质中稳定 NPL。在这项工作中,我们描述了一种将荧光 NPL 分散在水中并将其功能化用于生物检测的新方法。我们证明配体交换能够使 NPL 在水中分散,同时保持光学性质和在生物环境中的长期胶体稳定性。通过随机或定向构象,将四种不同颜色的 NPL 与生物分子进行功能化。我们首次报道,我们的 NPL 在流式细胞术染色细胞时比标准荧光染料,如藻红蛋白或 Brilliant Violet 650(BV 650),具有更高的亮度。这些结果表明,NPL 是流式细胞术和多重细胞靶向成像应用中常见荧光染料的一种有趣替代品。

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