A novel Cu (Ⅱ) complex of 1-phenyl-3-methyl-4-acyl-5-pyrazolone was synthesized and crystallogra- phically characterized. The single-crystal structure of the complex reveals that the crystal belongs triclinic, space ...A novel Cu (Ⅱ) complex of 1-phenyl-3-methyl-4-acyl-5-pyrazolone was synthesized and crystallogra- phically characterized. The single-crystal structure of the complex reveals that the crystal belongs triclinic, space group P1 with cell parameters a=0.938 7(4) nm, b=1.124 4(5) nm, c=1.222 3(5) nm, α=99.538(7)°, β=104.049(8)°, γ=113.806(6)°, and Z=2, V=1.093 3(8) nm3. Cu(Ⅱ) ion is coordinated by two 1-phenyl-3-methyl-4-acyl-5-pyrazolone ligands, and one methanol molecule giving a coordination number of five, the coordination polyhedron around Cu(Ⅱ) ion can be described as a square pyramid. Two complex units link to each other through the hydrogen-bonding interactions to form a dimer. Meanwhile, a staircase-like layer structure was built up by offset face-to-face π…π stacking interactions and weak interactions between the dimers.展开更多
目的运用Discovery Studio 2018软件的反向找靶功能,对设计的一类3-芳基-5-芳甲酰胺基吡唑-4-乙酰胺衍生物进行药物潜在靶点预测和筛选。方法以取代的苯甲酸甲酯为起始原料,经过亲核加成-消除、亲核取代、缩合等四步反应得到目标化合物...目的运用Discovery Studio 2018软件的反向找靶功能,对设计的一类3-芳基-5-芳甲酰胺基吡唑-4-乙酰胺衍生物进行药物潜在靶点预测和筛选。方法以取代的苯甲酸甲酯为起始原料,经过亲核加成-消除、亲核取代、缩合等四步反应得到目标化合物。根据靶点筛选结果,用MTT法对其体外抗肿瘤活性进行初步筛选。结果与结论共合成了10个目标化合物,均为新化合物,其结构经1H-NMR、13C-NM R及HRMS谱确证。化合物5a^5h均具有一定的抗肿瘤活性,其中化合物5h的活性最佳,对人骨肉瘤细胞Saos-2和U-2 OS的抗增殖活性的IC50值分别是1. 3μmol·L^-1和0. 9μmol·L^-1。展开更多
文摘A novel Cu (Ⅱ) complex of 1-phenyl-3-methyl-4-acyl-5-pyrazolone was synthesized and crystallogra- phically characterized. The single-crystal structure of the complex reveals that the crystal belongs triclinic, space group P1 with cell parameters a=0.938 7(4) nm, b=1.124 4(5) nm, c=1.222 3(5) nm, α=99.538(7)°, β=104.049(8)°, γ=113.806(6)°, and Z=2, V=1.093 3(8) nm3. Cu(Ⅱ) ion is coordinated by two 1-phenyl-3-methyl-4-acyl-5-pyrazolone ligands, and one methanol molecule giving a coordination number of five, the coordination polyhedron around Cu(Ⅱ) ion can be described as a square pyramid. Two complex units link to each other through the hydrogen-bonding interactions to form a dimer. Meanwhile, a staircase-like layer structure was built up by offset face-to-face π…π stacking interactions and weak interactions between the dimers.