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In vivo selective imaging of metabolic glycosylation with a tetrazine-modified upconversion nanoprobe

机译:用四嗪改性的上变化纳米孔的代谢糖基化的体内选择性成像

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摘要

Glycans play an important role in various physiological and pathological processes. Metabolic labeling with bioorthogonal chemistry is a distinguished tool for detecting and tracking glycans in cells and in vivo. However, most of the currently available bioorthogonal turn-on probes based on organic fluorophores still suffer from some inevitable deficiencies, including shallow tissue penetration and spontaneous fluorescence. Herein, we designed and reported a bioorthogonal turn-on nanoprobe UCNP-T, which could realize the specific labeling and visualization of glycans on living cell membranes. UCNP-T was constructed based on a multi-spectral upconversion nanophosphor (UCNP) as the luminescence resonance energy transfer (LRET) donor and an organic molecule, tetrazine, as the acceptor. Using the as-prepared UCNP-T, we could specifically label the cell-surface glycans and monitor their level in living mice in real time through the ratio of upconversion luminescence (UCL) emissions of 540 nm to 650 nm (UCL540/UCL650), providing sensing with highly intrinsic reliability by self-calibration. Thus, the nanoprobe would provide a reliable tool for elucidating the role of glycosylation in cells and in vivo.
机译:聚糖在各种生理和病理过程中发挥着重要作用。与生物正交化学的代谢标记是用于检测和跟踪细胞和体内聚糖的杰出工具。然而,基于有机荧光团的大多数现有的生物正交开启探针仍然存在一些不可避免的缺陷,包括浅组织渗透和自发荧光。在此,我们设计并报告了生物正交开启Nanoprobe UCNP-T,其可以实现活细胞膜上的聚糖的特定标记和可视化。基于多光谱上变化纳米磷(UCNP)作为发光共振能量转移(LRET)供体和有机分子,四斋,作为受体的多光谱上变化纳米磷(UCNP-T构建。使用AS制备的UCNP-T,我们可以专门标记细胞表面聚糖并实时地通过540nm至650nm(UCL540 / UCL650)的上转化发光(UCL)排放的比例实时监测它们的水平。(UCL540 / UCL650),通过自校准提供具有高度内在可靠性的感应。因此,纳米孔将提供可靠的工具,以阐明糖基化在细胞和体内的作用。

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  • 来源
    《RSC Advances》 |2020年第27期|共7页
  • 作者单位

    South China Normal Univ Coll Biophoton MOE Key Lab Laser Life Sci Guangzhou Peoples R China;

    South China Normal Univ Coll Biophoton MOE Key Lab Laser Life Sci Guangzhou Peoples R China;

    South China Normal Univ Coll Biophoton MOE Key Lab Laser Life Sci Guangzhou Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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