Beyzaei Hamid, Sheikh Sakineh, Shiri Fereshteh, Aryan Reza
Department of Chemistry, Faculty of Science, University of Zabol Zabol Iran
RSC Adv. 2025 Apr 28;15(17):13618-13627. doi: 10.1039/d5ra01286d. eCollection 2025 Apr 22.
Acetic acid, as a weak organic acid, has a wide range of food, pharmaceutical, and industrial applications. It is also used as a green solvent, catalyst, and reagent in chemical experiments. Properties such as non-toxicity, safety, availability, and low cost have made it the preferred choice for acetylation processes. In this project, the interactions of a series of alkyl/aryl/heteroaryl hydrazides with acetic acid were investigated under reflux heating. A variety of reactions, including - and -acetylation, hydrolysis, and rearrangement, occurred in the presence of acetic acid. Most of the products were recrystallized in good to excellent yields under these conditions without the need for further purification. All synthesized compounds were characterized by NMR (H and C), FT-IR, and CHNS analysis. In addition, a novel method was proposed for the preparation of products 2a and 2i-q. This method has the potential to be extended to similar reagents. To investigate the biological activity and drug-like properties, some methods were employed on the synthesized compounds. Screening using the ChEMBL database revealed that out of 17 synthesized compounds, compounds 2b (ChEMBL93746), 2c (ChEMBL22425), and 2d (ChEMBL441343) exhibited significant activity against targets SIRT1, TPMT, and Tyrosinase, with measured values below 200 μM. Molecular docking demonstrated that compound 2o interacted with all three targets. These findings provide valuable insights into its potential as a promising multi-target drug candidate for future investigations.
乙酸作为一种弱有机酸,在食品、制药和工业领域有着广泛的应用。它还被用作化学实验中的绿色溶剂、催化剂和试剂。其无毒、安全、易得且成本低等特性使其成为乙酰化过程的首选。在本项目中,研究了一系列烷基/芳基/杂芳基酰肼与乙酸在回流加热条件下的相互作用。在乙酸存在下发生了多种反应,包括α-和β-乙酰化、水解和重排。在这些条件下,大多数产物重结晶产率良好至优异,无需进一步纯化。所有合成化合物均通过核磁共振(氢谱和碳谱)、傅里叶变换红外光谱和元素分析(CHNS)进行表征。此外,还提出了一种制备产物2a和2i - q的新方法。该方法有可能扩展到类似试剂。为了研究生物活性和类药性质,对合成化合物采用了一些方法。使用ChEMBL数据库进行筛选发现,在17种合成化合物中,化合物2b(ChEMBL93746)、2c(ChEMBL22425)和2d(ChEMBL441343)对靶点SIRT1、TPMT和酪氨酸酶表现出显著活性,测量值低于200 μM。分子对接表明化合物2o与所有三个靶点相互作用。这些发现为其作为未来有前景的多靶点药物候选物的潜力提供了有价值的见解。