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Biocompatible Copper(I) Catalysts for in Vivo Imaging of Glycans

机译:糖类体内成像的生物相容性铜(I)催化剂

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The Cu(I)-catalyzed azide−alkyne cycloaddition (CuAAC) is the standard method for bioorthogonal conjugation. However, current Cu(I) catalyst formulations are toxic, hindering their use in living systems. Here we report that BTTES, a tris(triazolylmethyl)amine-based ligand for Cu(I), promotes the cycloaddition reaction rapidly in living systems without apparent toxicity. This catalyst allows, for the first time, noninvasive imaging of fucosylated glycans during zebrafish early embryogenesis. We microinjected embryos with alkyne-bearing GDP-fucose at the one-cell stage and detected the metabolically incorporated unnatural sugars using the biocompatible click chemistry. Labeled glycans could be imaged in the enveloping layer of zebrafish embryos between blastula and early larval stages. This new method paves the way for rapid, noninvasive imaging of biomolecules in living organisms.
机译:Cu(I)催化的叠氮化物-炔烃环加成反应(CuAAC)是生物正交偶联的标准方法。然而,当前的Cu(I)催化剂制剂是有毒的,阻碍了它们在生物系统中的使用。在这里我们报告说,BTTES,铜(I)的三(三唑基甲基)胺基配体,在没有明显毒性的情况下,在生活系统中快速促进环加成反应。该催化剂首次允许在斑马鱼早期胚胎发生过程中对岩藻糖基化聚糖进行无创成像。我们在单细胞阶段将带有炔烃的GDP-岩藻糖微注射入胚胎,并使用生物相容性点击化学方法检测出代谢整合的非天然糖。标记的聚糖可以在囊胚和幼虫早期之间的斑马鱼胚胎的包膜层中成像。这种新方法为活生物体中生物分子的快速,非侵入性成像铺平了道路。

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