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新型对称咪唑鎓-杂环C7的合成、光物理表征及生物学性质评估

Synthesis, Photophysical Characterization and Evaluation of Biological Properties of C7, a Novel Symmetric -Imidazolium--Heterocycle.

作者信息

Kunstek Hannah, Wang Melaine, Hussein Hiba, Dhouib Ines, Khemakhem Bassem, Risler Arnaud, Philippot Stephanie, Frochot Celine, Arnoux Philippe, Fournier Bertrand, Varbanov Mihayl, Dumarçay-Charbonnier Florence

机构信息

Université de Lorraine, CNRS, L2CM, F-54000 Nancy, France.

Graz University of Technology, 8010 Graz, Austria.

出版信息

Microorganisms. 2023 Feb 16;11(2):495. doi: 10.3390/microorganisms11020495.

Abstract

A novel symmetric -imidazolium--heterocycle, called C7, was designed and synthesized in a quick two-step pathway, with the objective to synthesize biologically active supramolecular assembly. The synthesized compound was then analyzed for its photophysical properties, for a potential application in theragnostic (fluorescence) or phototherapy (photodynamic therapy, with the production of reactive oxygen species, such as singlet oxygen O). C7 was thus screened for its biological activity, in particular against important human pathogens of viral origin (respiratory viruses such as adenovirus type 2 and human coronavirus 229E) and of fungal and bacterial origin. The compound showed limited antiviral activity, combined with very good antiproliferative activity against breast cancer, and head and neck squamous cell carcinoma models. Interestingly, the selected compound showed excellent antibacterial activity against a large array of Gram-positive and Gram-negative clinically isolated pathogenic bacteria, with a possible inhibitory mechanism on the bacterial cell wall synthesis studied with electron microscopy and molecular docking tools. Collectively, the newly synthesized compound C7 could be considered as a potential lead for the development of new antibacterial treatment, endowed with basic photophysical properties, opening the door towards the future development of phototherapy approaches.

摘要

一种名为C7的新型对称咪唑鎓杂环化合物,通过快速的两步途径设计并合成,目的是合成具有生物活性的超分子组装体。然后对合成的化合物进行光物理性质分析,以探讨其在诊疗(荧光)或光疗(光动力疗法,产生活性氧,如单线态氧O)方面的潜在应用。因此,对C7进行了生物活性筛选,特别是针对重要的病毒源人类病原体(如2型腺病毒和人冠状病毒229E等呼吸道病毒)以及真菌和细菌源病原体。该化合物显示出有限的抗病毒活性,同时对乳腺癌和头颈鳞状细胞癌模型具有非常好的抗增殖活性。有趣的是,所选化合物对大量临床分离的革兰氏阳性和革兰氏阴性致病细菌具有优异的抗菌活性,通过电子显微镜和分子对接工具研究发现其可能对细菌细胞壁合成具有抑制机制。总体而言,新合成的化合物C7可被视为开发新型抗菌治疗的潜在先导物,具有基本的光物理性质,为光疗方法的未来发展打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ebc/9959923/badce0c98903/microorganisms-11-00495-g001a.jpg

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