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螺旋状阳离子受体:设计、合成、表征及在离子传输方面的首次应用

Helically shaped cation receptor: design, synthesis, characterisation and first application to ion transport.

作者信息

Boufroura Hamza, Plais Romain, Poyer Salomé, Gaucher Anne, Marrot Jérome, Clavier Gilles, Legrand François-Xavier, Huin Cécile, Guégan Philippe, Prim Damien, Salpin Jean-Yves

机构信息

Université Paris-Saclay, UVSQ, CNRS, UMR 8180, Institut Lavoisier de Versailles 78000 Versailles France

Université Paris-Saclay, CNR, Univ Evry, LAMBE 91025 Evry France.

出版信息

RSC Adv. 2020 Aug 27;10(52):31670-31679. doi: 10.1039/d0ra05519k. eCollection 2020 Aug 21.

Abstract

The methyl ester of 8-oxo-8-indeno[2',1':7,8]naphtho[1,2-]thiophene-2-carboxylic acid (1) and its corresponding PEGylated ester were synthesised and fully characterised. X-ray diffraction studies on (1) confirmed the helical structure of the receptor and that it is self-assembled into layers by π-π interactions. An in-depth study by DFT calculations and MS experiments (ESI-MS, MS/MS, IMRPD and ESI-IMS-MS) was carried out between (1) and the physiological cation K. The formation of supramolecular complexes between (1) and K with different stoichiometries was demonstrated and the cation K preferentially interacts with the oxygen atoms of the carbonyl bond of the ketone and ester groups and the sulphur atom of the heterocycle. The ability of the two synthesized aromatic architectures to transport ions across a model lipid membrane has been studied by electrophysiology experiments. The formation of pores was observed, even at nanomolar concentrations. Since the PEGylated molecule showed more regular pore definitions than the hydrophobic molecule, the introduction of a polar hydrophilic chain made it possible to control the orientation of the aromatic architectures within the membrane.

摘要

合成并全面表征了8-氧代-8-茚并[2',1':7,8]萘并[1,2-]噻吩-2-羧酸甲酯(1)及其相应的聚乙二醇化酯。对(1)的X射线衍射研究证实了该受体的螺旋结构,并且它通过π-π相互作用自组装成层。通过DFT计算和质谱实验(ESI-MS、MS/MS、IMRPD和ESI-IMS-MS)对(1)与生理阳离子K进行了深入研究。证明了(1)与K之间形成了具有不同化学计量比的超分子复合物,阳离子K优先与酮和酯基团羰基键的氧原子以及杂环的硫原子相互作用。通过电生理学实验研究了两种合成的芳香结构跨模型脂质膜转运离子的能力。即使在纳摩尔浓度下也观察到了孔的形成。由于聚乙二醇化分子比疏水分子表现出更规则的孔结构,引入极性亲水链使得能够控制芳香结构在膜内的取向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76e6/9056421/eed174b767b6/d0ra05519k-f1.jpg

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