University of Brasilia, Institute of Chemistry, Laboratory of Medicinal and Technological Chemistry. Campus Universitário Darcy Ribeiro, Brasília, DF, 70910-900, Brazil.
Universidade Estadual de Goiás (UEG), Anápolis, Goiás, 75001-970, Brazil.
Org Biomol Chem. 2024 May 8;22(18):3630-3651. doi: 10.1039/d4ob00272e.
This study critically reevaluates reported Biginelli-like reactions using a Kamlet-Abboud-Taft-based solvent effect model. Surprisingly, structural misassignments were discovered in certain multicomponent reactions, leading to the identification of pseudo three-component derivatives instead of the expected MCR adducts. Attempts to replicate literature conditions failed, prompting reconsideration of the described MCRs and proposed mechanisms. Electrospray ionization (tandem) mass spectrometry, NMR, melting points, elemental analyses and single-crystal X-ray analysis exposed inaccuracies in reported MCRs and allowed for the proposition of a complete catalytic cycle. Biological investigations using both pure and "contaminated" derivatives revealed distinctive features in assessed bioassays. A new cellular action mechanism was unveiled for a one obtained pseudo three-component adduct, suggesting similarity with the known dihydropyrimidinone Monastrol as Eg5 inhibitors, disrupting mitosis by forming monoastral mitotic spindles. Docking studies and RMSD analyses supported this hypothesis. The findings described herein underscore the necessity for a critical reexamination and potential corrections of structural assignments in several reports. This work emphasizes the significance of rigorous characterization and critical evaluation in synthetic chemistry, urging a careful reassessment of reported synthesis and biological activities associated with these compounds.
本研究使用基于 Kamlet-Abboud-Taft 的溶剂效应模型对报道的 Biginelli 型反应进行了批判性再评估。令人惊讶的是,在某些多组分反应中发现了结构错误分配,导致鉴定出假的三组分衍生物而不是预期的 MCR 加合物。尝试复制文献条件失败,促使重新考虑描述的 MCR 和提出的机制。电喷雾电离(串联)质谱、NMR、熔点、元素分析和单晶 X 射线分析揭示了文献中报道的 MCR 的不准确性,并提出了完整的催化循环。使用纯和“污染”衍生物进行的生物学研究在评估的生物测定中揭示了独特的特征。获得的一种假三组分加合物揭示了一种新的细胞作用机制,表明与已知的二氢嘧啶酮类 Monastrol 作为 Eg5 抑制剂具有相似性,通过形成单星状有丝分裂纺锤体来破坏有丝分裂。对接研究和 RMSD 分析支持了这一假设。本文所述的研究结果强调了在几个报告中对结构分配进行批判性再检查和潜在修正的必要性。这项工作强调了在合成化学中严格表征和批判性评估的重要性,促使对这些化合物的报道合成和生物活性进行仔细重新评估。