Institut für Organische Chemie und Makromolekulare Chemie, Heinrich-Heine-Universität Düsseldorf, Universitätsstraße 1, 40225, Düsseldorf, Germany.
Institut für Medizinische Mikrobiologie und Krankenhaushygiene, Heinrich-Heine-Universität Düsseldorf, Universitätsstraße 1, 40225, Düsseldorf, Germany.
Chemistry. 2021 Jul 7;27(38):9774-9781. doi: 10.1002/chem.202101391. Epub 2021 May 27.
A gold-catalyzed cycloisomerization of 2-indolyl-3-[(trimethylsilyl)ethynyl)]quinoxalines with concomitant 1,2-silyl shift forms 6-(trimethylsilyl)indolo[3,2-a]phenazines in moderate to excellent yield. These silylated heterocycles are readily transformed into 6-aryl-indolo[3,2-a]phenazines in moderate to good yield by one-pot ipso-iodination Suzuki coupling. The title compounds represent a novel type of tunable luminophore. Structure-property relationships for 6-aryl-indolo[3,2-a]phenazines obtained from Hammett correlations with σ substituent parameters indicate that emission maxima, Stokes shifts, and fluorescence quantum yields can be fine-tuned by the remote para-aryl substituent. Furthermore, indolo[3,2-a]phenazines were found to exhibit interesting activities against medically relevant pathogens such as the Apicomplexa parasite Toxoplasma gondii with an IC of up to 0.67±0.13 μM. Thus, these compounds are promising candidates for novel anti-parasitic therapies.
金催化的 2-吲哚基-3-[(三甲基硅基)乙炔基]喹喔啉与伴随的 1,2-硅迁移环化反应以中等至优异的收率形成 6-(三甲基硅基)吲哚并[3,2-a]吩嗪。这些硅化杂环可以通过一锅法的反位碘化Suzuki 偶联反应以中等至良好的收率转化为 6-芳基吲哚并[3,2-a]吩嗪。标题化合物代表了一种新型可调谐发光体。通过与 σ取代基参数的哈米特相关性获得的 6-芳基吲哚并[3,2-a]吩嗪的结构-性质关系表明,通过远程对位芳基取代基可以精细调节发射最大值、斯托克斯位移和荧光量子产率。此外,还发现吲哚并[3,2-a]吩嗪对医学相关病原体(如 Apicomplexa 寄生虫弓形虫)表现出有趣的活性,其 IC 高达 0.67±0.13μM。因此,这些化合物是新型抗寄生虫疗法的有前途的候选物。