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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >SYNTHESIS, CRYSTAL STRUCTURE, ANTITUMOR ACTIVITY, AND DNA-BINDING PROPERTIES OF THE NEW ACTIVE PLATINUM COMPOUND (BIS(N-METHYLIMIDAZOL-2-YL)CARBINOL)DICHLOROPLATINUM(II), LACKING A NH MOIETY, AND OF THE INACTIVE ANALOG DICHLORO(N-1, N-1'-DIMETHYL-2,2
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SYNTHESIS, CRYSTAL STRUCTURE, ANTITUMOR ACTIVITY, AND DNA-BINDING PROPERTIES OF THE NEW ACTIVE PLATINUM COMPOUND (BIS(N-METHYLIMIDAZOL-2-YL)CARBINOL)DICHLOROPLATINUM(II), LACKING A NH MOIETY, AND OF THE INACTIVE ANALOG DICHLORO(N-1, N-1'-DIMETHYL-2,2

机译:新型活性铂化合物(双(N-甲基咪唑-2-基)甲醇)二氯铂(II),缺少NH的部分以及无活性的模拟二氯(N)的合成,晶体结构,反义活性和DNA结合特性-1,N-1'-二甲基-2,2

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摘要

To obtain insight into the structure-activity relationships of new antitumor active platinum compounds the X-ray structure of the antitumor active Pt compound [Pt(bmic)Cl-2] (bmic = bis-(N-methylimidazol-2-yl)carbinol) (1) and its interaction with short DNA fragments has been investigated using NMR spectroscopy, For comparison also the structurally related compound [Pt(bmi)Cl-2] (bmi = N-1,N-1'-dimethyl-2,2'-biimidazole) (2), which is not antitumor active, has been studied. The structure of the compound [Pt(bmic)Cl-2] (1) was characterized by single-crystal X-ray structure determination, Compound 1 crystallizes in the monoclinic space group P2(1), with a = 10.055(3) Angstrom, b = 11.802(3) Angstrom, c = 10.620(3) Angstrom, beta = 103.78(2)degrees, V = 1224.0(6) Angstrom(3) and Z = 4. Convergence was reached at wR2 = 0.1148 (all data) and R1 = 0.0476 (I > 2 (I)) for 2433 independent reflections and 156 adjustable parameters, The platinum atom is coordinated by two nitrogen and two chlorine atoms, resulting in a square planar PtN2Cl2 coordination sphere. The two best least-squares planes through the two imidazole rings of the bmic ligand show a dihedral angle of 30.6 degrees. The in vitro and in vive antitumor activity of 1 is significant whereas for compound 2 no antitumor activity could be detected. In P388 mice leukemia an increase of lifespan of 56% was found for complex 1. The antitumor active Pt compound [Pt(bmic)Cl-2] binds to G bases in a similar fashion as cisplatin with a clear preference for N7, In reaction with d(GpG) two stereoisomers are formed, due to the unsymmetric bmic complex and the chiral d(GpG) molecule. Stereoisomer A, i.e. the isomer with the OH group of the bmic and the O6 of the G bases oriented on the same side of the Pt-N-4 plane, is preferentially formed. Modeling studies suggest that this preference is due to the presence of H bonds from the OH of the bmic moiety toward the O6 of the G bases. The presence of many conformers, present in solution, could also be due to these H bonds. For the inactive complex [Pt(bmi)Cl-2] only one GG-N7,N7 chelate is observed. Differences in reactivity toward G bases were also detected for the two platinum complexes. The inactive bmi complex proves to be the most reactive one, whereas the antitumor active bmic compound is less reactive. Thus both structural and kinetic properties may explain the different biological properties of these new platinum compounds. [References: 58]
机译:为了深入了解新型抗肿瘤活性铂化合物的结构-活性关系,需对抗肿瘤活性Pt化合物[Pt(bmic)Cl-2]的X射线结构进行分析(bmic =双-(N-甲基咪唑-2-基)甲醇)(1)及其与短DNA片段的相互作用已使用NMR光谱进行了研究,为了比较结构相关的化合物[Pt(bmi)Cl-2](bmi = N-1,N-1'-dimethyl-2, 2'-biimidazole)(2),没有抗肿瘤活性,已经被研究。通过单晶X射线结构测定表征化合物[Pt(bmic)Cl-2](1)的结构,化合物1在单斜空间群P2(1)/ n中结晶,a = 10.055(3) )埃,b = 11.802(3)埃,c = 10.620(3)埃,β= 103.78(2)度,V = 1224.0(6)埃(3),Z =4。在wR2 = 0.1148(所有数据),对于2433个独立反射和156个可调参数,R1 = 0.0476(I> 2(I))。铂原子由两个氮和两个氯原子配位,形成一个方形的平面PtN2Cl2配位球。穿过bmic配体的两个咪唑环的两个最佳最小二乘平面显示了30.6度的二面角。 1的体外和体内抗肿瘤活性很明显,而对于化合物2则未检测到抗肿瘤活性。在P388小鼠白血病中,复合物1的寿命增加了56%。抗肿瘤活性的Pt化合物[Pt(bmic)Cl-2]以与顺铂相似的方式与G碱基结合,对N7有明显的偏好。由于不对称的生物复合物和手性的d(GpG)分子,与d(GpG)形成两个立体异构体。优先形成立体异构体A,即具有在Bt-N-4平面的同一侧上取向的bmic的OH基和G的O6的异构体。建模研究表明,这种偏好是由于存在从生物部分的OH到G碱基的O6的H键。溶液中存在的许多构象异构体也可能是由于这些H键所致。对于无活性的复合物[Pt(bmi)Cl-2],仅观察到一种GG-N7,N7螯合物。对于两种铂配合物,还检测到了对G碱基的反应性差异。无活性的bmi复合物被证明是反应性最高的化合物,而抗肿瘤活性的bmic化合物则反应性较低。因此,结构和动力学性质均可解释这些新的铂化合物的不同生物学性质。 [参考:58]

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