Department of Bioactive Products, Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.
Department of Quantum Chemistry, Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.
Int J Mol Sci. 2024 May 14;25(10):5364. doi: 10.3390/ijms25105364.
Alkaloids are natural compounds useful as scaffolds for discovering new bioactive molecules. This study utilized alkaloid gramine to synthesize two groups of C3-substituted indole derivatives, which were either functionalized at N1 or not. The compounds were characterized by spectroscopic methods. The protective effects of the new compounds against in vitro oxidative hemolysis induced by standard oxidant 2,2'-azobis(2-amidinopropane dihydro chloride (AAPH) on human erythrocytes as a cell model were investigated. Additionally, the compounds were screened for antimicrobial activity. The results indicated that most of the indole derivatives devoid of the N1 substitution exhibited strong cytoprotective properties. The docking studies supported the affinities of selected indole-based ligands as potential antioxidants. Furthermore, the derivatives obtained exhibited potent fungicidal properties. The structures of the eight derivatives possessing indole moiety bridged to the imidazole-, benzimidazole-, thiazole-, benzothiazole-, and 5-methylbenzothiazoline-2-thiones were determined by X-ray diffraction. The C=S bond lengths in the thioamide fragment pointed to the involvement of zwitterionic structures of varying contribution. The predominance of zwitterionic mesomers may explain the lack of cytoprotective properties, while steric effects, which limit multiple the hydrogen-bond acceptor properties of a thione sulfur, seem to be responsible for the high hemolytic activity.
生物碱是一类天然化合物,可用作发现新的生物活性分子的支架。本研究利用 gramine 生物碱合成了两组 C3-取代的吲哚衍生物,这些衍生物在 N1 位被功能化或未被功能化。通过光谱方法对化合物进行了表征。研究了新化合物对人红细胞体外氧化溶血的保护作用,以标准氧化剂 2,2'-偶氮双(2-脒基丙烷)二盐酸盐(AAPH)作为细胞模型。此外,还对化合物进行了抗菌活性筛选。结果表明,大多数不含 N1 取代的吲哚衍生物表现出较强的细胞保护作用。对接研究支持了所选吲哚配体作为潜在抗氧化剂的亲和力。此外,获得的衍生物表现出很强的杀真菌活性。通过 X 射线衍射确定了具有吲哚部分桥接到咪唑、苯并咪唑、噻唑、苯并噻唑和 5-甲基苯并噻唑啉-2-硫酮的八个衍生物的结构。硫酰胺片段中的 C=S 键长表明存在不同贡献的两性离子结构。两性离子中间体的优势可能解释了缺乏细胞保护作用的原因,而空间效应限制了硫酮硫的多个氢键接受特性,这似乎是导致高溶血活性的原因。