5-溴-2-甲基吡啶-3-胺铃木交叉偶联反应高效合成新型吡啶衍生物:量子力学研究和生物活性

Gulraiz Ahmad, N. Rasool, H. Ikram, Samreen Gul Khan, T. Mahmood, K. Ayub, M. Zubair, Eman J. Al-Zahrani, Usman Ali Rana, M. Akhtar, N. Alitheen
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引用次数: 25

摘要

本文研究了钯催化的一锅铃木交叉偶联反应,合成了一系列新型吡啶衍生物2a-2i, 4a-4i。简单地说,5-溴-2-甲基吡啶-3-胺(1)直接或通过N-[5-溴-2-甲基吡啶-3-酰基]乙酰胺(3)与几种芳基硼酸进行铃木交叉偶联反应,得到了这些新型吡啶衍生物,产率中等至良好。采用B3LYP/6-31G(d,p)基,利用GAUSSIAN 09 suite程序对吡啶衍生物2a-2i和4a-4i进行了密度泛函理论(DFT)研究。通过前沿分子轨道分析、反应性指数、分子静电势和偶极子测量,描述了可能的反应途径和潜在的液晶手性掺杂剂。并对吡啶衍生物的抗溶栓、生物膜抑制和溶血活性进行了研究。在所有新合成的化合物中,化合物4b对人体血液凝块形成的裂解率最高(41.32%)。此外,化合物4f对大肠杆菌的抑制作用最强,抑制值为91.95%。其余的吡啶衍生物表现出中等的生物活性。
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Efficient Synthesis of Novel Pyridine-Based Derivatives via Suzuki Cross-Coupling Reaction of Commercially Available 5-Bromo-2-methylpyridin-3-amine: Quantum Mechanical Investigations and Biological Activities
The present study describes palladium-catalyzed one pot Suzuki cross-coupling reaction to synthesize a series of novel pyridine derivatives 2a–2i, 4a–4i. In brief, Suzuki cross-coupling reaction of 5-bromo-2-methylpyridin-3-amine (1) directly or via N-[5-bromo-2-methylpyridine-3-yl]acetamide (3) with several arylboronic acids produced these novel pyridine derivatives in moderate to good yield. Density functional theory (DFT) studies were carried out for the pyridine derivatives 2a–2i and 4a–4i by using B3LYP/6-31G(d,p) basis with the help of GAUSSIAN 09 suite programme. The frontier molecular orbitals analysis, reactivity indices, molecular electrostatic potential and dipole measurements with the help of DFT methods, described the possible reaction pathways and potential candidates as chiral dopants for liquid crystals. The anti-thrombolytic, biofilm inhibition and haemolytic activities of pyridine derivatives were also investigated. In particular, the compound 4b exhibited the highest percentage lysis value (41.32%) against clot formation in human blood among all newly synthesized compounds. In addition, the compound 4f was found to be the most potent against Escherichia coli with an inhibition value of 91.95%. The rest of the pyridine derivatives displayed moderate biological activities.
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