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用于可持续合成生物活性吡唑的创新型二氧化硅负载酸催化剂:作用机制与应用探究

Innovative Silica-Supported Acid Catalyst for Sustainable Synthesis of Bioactive Pyrazoles: Insights into Mechanisms and Applications.

作者信息

Aslam Afroz, Al Hoqani Umaima Hamed, Parveen Mehtab, Azmi Syed Najmul Hejaz, Alam Mahboob

机构信息

Department of Chemistry, Constituent Government College, Thakurdwara, Moradabad, M.J.P. Rohilkhand University, Bareilly, U.P. 243006, India.

Department of Chemistry, Aligarh Muslim University, Aligarh, U.P. 20002, India.

出版信息

ACS Omega. 2025 May 8;10(19):19750-19763. doi: 10.1021/acsomega.5c00920. eCollection 2025 May 20.

Abstract

An innovative silica-bonded -(propylaminobenzene)-sulfonic acid (SBPASA) catalyst was synthesized by immobilizing metanilic acid onto silica and characterized using advanced techniques, including FTIR, XRD, SEM/EDX, Raman spectroscopy, UV-visible analysis, and BET surface area analysis. The catalyst exhibited a high surface area of 306.9 m/g, an optimal mesoporous diameter of 31.4 Å, and high product yields (up to 98%), distinguishing it from previously reported silica-supported catalysts. This catalyst facilitated the efficient preparation of 4,4'-(arylmethylene)-bis-(1-pyrazol-5-ols) (-) in a solvent-free environment, resulting in high yields with a variety of functional groups. The silica surface played a critical role in facilitating key reaction steps, including Michael addition, Knoevenagel condensation, and cyclization. The catalyst demonstrated remarkable recyclability, retaining its catalytic activity up to six consecutive cycles without significant loss in efficiency. The DPPH free radical scavenging assay was employed to assess the antioxidant activity of the synthesized compounds. Compound demonstrated the highest potency with an IC value of 12.46 μg/mL. Molecular docking of compound with soybean lipoxygenase-1 (PDB ID: 3pzw) revealed significant binding energy (-7.9 kcal/mol), further supported by iMODS normal-mode analysis indicating stable binding and providing insights into its conformational flexibility during the interaction. This work underscores SBPASA's utility as a recyclable, sustainable catalyst for green transformations and a gateway to bioactive compounds with pharmaceutical relevance.

摘要

通过将间氨基苯磺酸固定在二氧化硅上合成了一种创新的二氧化硅键合-(丙基氨基苯)-磺酸(SBPASA)催化剂,并使用包括傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、扫描电子显微镜/能谱仪(SEM/EDX)、拉曼光谱、紫外可见分析和比表面积分析(BET)等先进技术对其进行了表征。该催化剂具有306.9 m²/g的高比表面积、31.4 Å的最佳介孔直径和高达98%的高产物收率,这使其有别于先前报道的二氧化硅负载催化剂。这种催化剂有助于在无溶剂环境中高效制备4,4'-(芳基亚甲基)-双-(1-吡唑-5-醇),从而以高产率得到含有多种官能团的产物。二氧化硅表面在促进关键反应步骤(包括迈克尔加成、克诺文纳格尔缩合和环化)中起关键作用。该催化剂表现出显著的可回收性,连续六个循环保持其催化活性,效率无明显损失。采用二苯基苦味酰基自由基(DPPH)清除试验评估合成化合物的抗氧化活性。化合物显示出最高活性,IC₅₀值为12.46 μg/mL。化合物与大豆脂氧合酶-1(蛋白质数据银行(PDB)编号:3pzw)的分子对接显示出显著的结合能(-7.9千卡/摩尔),iMODS正常模式分析进一步支持了这一点,表明结合稳定,并为其相互作用过程中的构象灵活性提供了见解。这项工作强调了SBPASA作为一种可回收、可持续的绿色转化催化剂以及通往具有药物相关性的生物活性化合物的途径的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b953/12096245/e131194a4dcb/ao5c00920_0012.jpg

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