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基于脂质纳米反应器中分子识别驱动的动态共价化学的多巴胺荧光人工受体

Fluorescent Artificial Receptor for Dopamine based on Molecular Recognition-driven Dynamic Covalent Chemistry in a Lipid Nanoreactor.

作者信息

Kozibroda Bohdan, Lehn Jean-Marie, Klymchenko Andrey S

机构信息

UMR 7021 CNRS, Laboratoire de Bioimagerie et Pathologies, ITI SysChem-Chimie des Systèmes Complexes, Université de Strasbourg, 74 route du, Rhin, 67401, Illkirch, France.

Laboratoire de Chimie Supramoléculaire, Institut de Science et d'Ingénierie Supramoléculaires (ISIS), Université de Strasbourg, 8 allée Gaspard Monge, 67000, Strasbourg, France.

出版信息

Angew Chem Int Ed Engl. 2025 Apr 1;64(14):e202419905. doi: 10.1002/anie.202419905. Epub 2025 Feb 3.

Abstract

Molecular recognition and detection of small bioactive molecules, like neurotransmitters, remain a challenge for chemists, whereas nature found an elegant solution in the form of protein receptors. Here, we introduce a concept of a dynamic artificial receptor that synergically combines molecular recognition with dynamic imine bond formation inside a lipid nanoreactor, inducing a fluorescence response. The designed supramolecular system combines a lipophilic recognition ligand derived from a boronic acid, a fluorescent aldehyde based on push-pull styryl pyridine and a phenol-based catalyst. The recognition ligand specifically captures dopamine inside lipid nanodroplets and thus triggers imine bond formation with the aldehyde, producing the emission color change. The rational design of the fluorescent aldehyde, the catalyst, and the recognition ligand allows dramatic acceleration of the imine bond formation required for rapid sensing of dopamine. The nanoprobe enables dopamine detection with micromolar sensitivity and singe-nanoprobe imaging of dopamine gradients through its robust two-color ratiometric response. It displays remarkable selectivity without the interference of competing biogenic primary amines and biological media: blood serum, plasma, urine and cell lysate. The proposed concept of a dynamic artificial receptor offers a solution to the long-standing problem of molecular recognition and sensing of small molecules in complex biological media.

摘要

对化学家来说,分子识别和检测小生物活性分子(如神经递质)仍然是一项挑战,而自然界以蛋白质受体的形式找到了一个巧妙的解决方案。在此,我们引入了一种动态人工受体的概念,该受体在脂质纳米反应器内将分子识别与动态亚胺键形成协同结合,从而引发荧光响应。所设计的超分子系统结合了一种源自硼酸的亲脂性识别配体、一种基于推拉式苯乙烯基吡啶的荧光醛和一种基于苯酚的催化剂。识别配体在脂质纳米液滴内特异性捕获多巴胺,从而触发与醛的亚胺键形成,产生发射颜色变化。荧光醛、催化剂和识别配体的合理设计极大地加速了快速检测多巴胺所需的亚胺键形成。该纳米探针通过其强大的双色比率响应,能够以微摩尔灵敏度检测多巴胺,并对多巴胺梯度进行单纳米探针成像。它显示出显著的选择性,不受竞争性生物源性伯胺和生物介质(血清、血浆、尿液和细胞裂解液)的干扰。所提出的动态人工受体概念为复杂生物介质中小分子的分子识别和传感这一长期存在的问题提供了解决方案。

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