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基于二噻吩乙烯和俘精酸酐的光致变色多巴胺受体配体

Photochromic Dopamine Receptor Ligands Based on Dithienylethenes and Fulgides.

作者信息

Lachmann Daniel, Studte Carolin, Männel Barbara, Hübner Harald, Gmeiner Peter, König Burkhard

机构信息

Institute of Organic Chemistry, Faculty of Chemistry and Pharmacy, University of Regensburg, Universitätsstrasse 31, 93053, Regensburg, Germany.

Department of Chemistry and Pharmacy, Friedrich-Alexander University, Emil Fischer Center, Schuhstrasse 19, 91052, Erlangen, Germany.

出版信息

Chemistry. 2017 Sep 27;23(54):13423-13434. doi: 10.1002/chem.201702147. Epub 2017 Aug 29.

Abstract

We describe the incorporation of the well-investigated class of photochromic dithienylethenes (DTEs) and fulgides into known dopamine receptor ligands such as 1,4-disubstituted aromatic and hydroxybenzoxazinone piperazines as well as aminoindanes. Subtype and functional selective photochromic ligands were obtained and characterized by NMR and UV/VIS spectroscopic measurements. The photophysical properties of the DTE based dopamine ligands revealed a high fatigue resistance for the diarylmaleimides, but the ringclosure could not be accomplished in polar solvents due to a known twisted intramolecular charge transfer (TICT). Several cyclopentene-DTEs showed high PSS, but a fast degradation by forming an irreversible byproduct. Focusing on the fulgides, high photostationary states and switching in polar solvents were possible. The compounds 43, 45 and 46 containing the isopropyl group showed only isomerization between the open E-form and the closed C-form. At a concentration of 1 nm, the cyclopentene-DTE 29-open showed a more than 11-fold higher activation of D , a pharmacologically important G protein-coupled receptor, than its photochromic congener 29-closed. Interestingly, the fulgimide-based pair 52-(E)-open/52-closed could be discovered as an alternative photoswitch with inverse activation properties exhibiting four-fold higher activity in the closed state.

摘要

我们描述了将经过充分研究的光致变色二噻吩乙烯(DTEs)和俘精酸酐类化合物引入已知的多巴胺受体配体中,如1,4 - 二取代芳族化合物、羟基苯并恶嗪酮哌嗪以及氨基茚满。通过核磁共振(NMR)和紫外/可见光谱测量获得并表征了亚型和功能选择性的光致变色配体。基于DTE的多巴胺配体的光物理性质显示,二芳基马来酰亚胺具有高抗疲劳性,但由于已知的扭曲分子内电荷转移(TICT),在极性溶剂中无法完成闭环。几种环戊烯 - DTEs表现出高光稳态,但通过形成不可逆副产物而快速降解。聚焦于俘精酸酐,在极性溶剂中实现高光稳态和开关是可能的。含有异丙基的化合物43、45和46仅在开放的E型和封闭的C型之间异构化。在浓度为1 nm时,环戊烯 - DTE 29 - 开放形式对药理学上重要的G蛋白偶联受体D的激活作用比其光致变色同源物29 - 封闭形式高11倍以上。有趣的是,基于俘精酰亚胺的对52 -(E)- 开放/52 - 封闭可被发现为具有反向激活特性的替代光开关,在封闭状态下活性高四倍。

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