Molecular insights into genistein-NSAID hybrids—synthesis, characterisation and DFT study

IF 2.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Kacper Kossakowski, Justyna Żwawiak, Alina Cherniienko, Lucjusz Zaprutko, Anna Pawełczyk
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Abstract

Genistein (GEN) is one of the pharmaceutically valuable phenolic compounds, which belongs to the isoflavone group of flavonoids and is a natural phytohormone found mainly in soybeans and red clover. It affects estrogen receptors, functioning as a selective estrogen receptor modulator (SERM) with anti-inflammatory and antioxidant activity. The presence of reactive phenolic groups in genistein provides an opportunity to expand its structure by introducing components responsible for anti-inflammatory properties. Such an innovative combination of a compound with anticancer and antioxidant potential with an anti-inflammatory compound (NSAID) may lead to interesting new derivatives with dual mechanisms of biological action. The synthesis and characterisation of genistein-NSAID hybrid compounds (ibuprofen, ketoprofen, naproxen, flurbiprofen) was conducted, together with a comprehensive structural and quantum chemistry DFT (density functional theory) computational analysis allowing the description of 1H-NMR and 13C-NMR spectroscopic properties of the starting compounds and the resulting hybrids. The study resulted in the formation of seven hybrid GEN-NSAID derivatives. In the case of ibuprofen, ketoprofen and flurbiprofen, a mixture of isomeric hybrid GEN-4’-NSAID and GEN-7-NSAID derivatives was obtained, whereas, for naproxen, only GEN-4’-NSAID was formed. The structural characteristics of the resulting compounds were determined using MS, IR, 1H-NMR and 13C-NMR spectroscopic methods. The most accurate DFT computational methods for predicting 1H-NMR and 13C-NMR spectra were also established with statistical parameters to assess their accuracy.

染料木素-非甾体抗炎药杂合物的合成、表征和DFT研究
染料木素(genestein, GEN)是一种具有药用价值的酚类化合物,属于黄酮类异黄酮族,是一种主要存在于大豆和红三叶草中的天然植物激素。它影响雌激素受体,作为选择性雌激素受体调节剂(SERM)具有抗炎和抗氧化活性。染料木黄酮中活性酚基团的存在提供了通过引入负责抗炎特性的成分来扩展其结构的机会。这种具有抗癌和抗氧化潜力的化合物与抗炎化合物(NSAID)的创新组合可能会产生具有双重生物作用机制的有趣的新衍生物。对染料木素-非甾体抗炎药杂化化合物(布洛芬、酮洛芬、萘普生、氟比洛芬)进行了合成和表征,并进行了全面的结构和量子化学DFT(密度泛谱理论)计算分析,描述了起始化合物和所得杂化化合物的1H-NMR和13C-NMR光谱性质。这项研究产生了7种混合的GEN-NSAID衍生物。在布洛芬、酮洛芬和氟比洛芬的情况下,得到了同分异构体GEN-4′-NSAID和GEN-7-NSAID衍生物的混合物,而对于萘普生,只形成了GEN-4′-NSAID。采用质谱、红外光谱、1H-NMR和13C-NMR等方法对所得化合物的结构特征进行了表征。建立了预测1H-NMR和13C-NMR波谱最准确的DFT计算方法,并用统计参数评估其准确性。
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来源期刊
Structural Chemistry
Structural Chemistry 化学-化学综合
CiteScore
3.80
自引率
11.80%
发文量
227
审稿时长
3.7 months
期刊介绍: Structural Chemistry is an international forum for the publication of peer-reviewed original research papers that cover the condensed and gaseous states of matter and involve numerous techniques for the determination of structure and energetics, their results, and the conclusions derived from these studies. The journal overcomes the unnatural separation in the current literature among the areas of structure determination, energetics, and applications, as well as builds a bridge to other chemical disciplines. Ist comprehensive coverage encompasses broad discussion of results, observation of relationships among various properties, and the description and application of structure and energy information in all domains of chemistry. We welcome the broadest range of accounts of research in structural chemistry involving the discussion of methodologies and structures,experimental, theoretical, and computational, and their combinations. We encourage discussions of structural information collected for their chemicaland biological significance.
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