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芳基偶氮苯并咪唑:具有可调节反式异构体稳定性的多功能可见光光开关。

Arylazobenzimidazoles: versatile visible-light photoswitches with tuneable -isomer stability.

作者信息

Steinmüller Sophie A M, Odaybat Magdalena, Galli Giulia, Prischich Davia, Fuchter Matthew J, Decker Michael

机构信息

Pharmazeutische und Medizinische Chemie, Institut für Pharmazie und Lebensmittelchemie, Julius-Maximilians-Universität Würzburg Am Hubland 97074 Würzburg Germany

Department of Chemistry, Molecular Sciences Research Hub, White City Campus, Imperial College London London W12 0BZ UK

出版信息

Chem Sci. 2024 Mar 5;15(14):5360-5367. doi: 10.1039/d3sc05246j. eCollection 2024 Apr 3.

Abstract

Benzimidazole heterocycles are of great importance in medicinal chemistry due to their applicability to a wide range of pharmacological targets, therefore representing a prototypical "privileged structure". In photopharmacology, azoheteroarene photoswitches have emerged as valuable tools for a variety of applications due to the high tuneability of their photophysical properties. Benzimidazole-based photoswitches could therefore enable the optically-controlled investigation of many pharmacological targets and find application in materials science. Here we report a combined experimental and computational investigation of such arylazobenzimidazoles, which allowed us to identify derivatives with near-quantitative bidirectional photoswitching using visible light and highly tuneable -isomer stability. We further demonstrate that arylazobenzimidazoles bearing a free benzimidazole N-H group not only exhibit efficient bidirectional photoswitching, but also excellent thermal -isomer stability, contrary to previously reported fast-relaxing -isomers of N-H azoheteroarenes. Finally, we describe derivatives which can be reversibly isomerized with cyan and red light, thereby enabling significantly "red-shifted" photocontrol over prior azoheteroarenes. The understanding gained in this study should enable future photopharmacological efforts by employing photoswitches based on the privileged benzimidazole structure.

摘要

苯并咪唑杂环在药物化学中具有重要意义,因为它们适用于广泛的药理学靶点,因此代表了一种典型的“特权结构”。在光药理学中,偶氮杂芳烃光开关因其光物理性质的高度可调节性而成为各种应用的有价值工具。基于苯并咪唑的光开关因此能够对许多药理学靶点进行光控研究,并在材料科学中找到应用。在此,我们报告了对此类芳基偶氮苯并咪唑的实验和计算相结合的研究,这使我们能够鉴定出使用可见光具有近乎定量双向光开关且异构体稳定性高度可调节的衍生物。我们进一步证明,带有游离苯并咪唑N-H基团的芳基偶氮苯并咪唑不仅表现出高效的双向光开关,而且具有出色的热异构体稳定性,这与先前报道的N-H偶氮杂芳烃的快速弛豫异构体相反。最后,我们描述了可以用蓝光和红光可逆异构化的衍生物,从而实现了比先前偶氮杂芳烃显著“红移”的光控。本研究中获得的认识应能通过采用基于特权苯并咪唑结构的光开关推动未来的光药理学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/999c/10988581/d4d5c51df60e/d3sc05246j-f1.jpg

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