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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >SYNTHESIS, CHARACTERIZATION, AND CRYSTAL STRUCTURE OF THE ISOSTRUCTURAL N,N'-(OCTANE-1,8-DIYL)BIS(GUANIDINIUM) TETRACHLOROPLATINATE(II) AND PALLADATE(II) - ANTIAMEBIC EFFECTS STUDY
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SYNTHESIS, CHARACTERIZATION, AND CRYSTAL STRUCTURE OF THE ISOSTRUCTURAL N,N'-(OCTANE-1,8-DIYL)BIS(GUANIDINIUM) TETRACHLOROPLATINATE(II) AND PALLADATE(II) - ANTIAMEBIC EFFECTS STUDY

机译:等结构N,N'-(辛烷-1,8-二基)双(胍)四氟戊酸酯(II)和钯(II)的合成,表征和晶体结构-抗代谢作用研究

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The synthesis and crystal structures of the N,N'-(octane-1,8-diyl)bis(guanidinium)tetrachloroplatinate (II) or palladate (II) [C10H26N6](2+)[MCl(4)](2-) with M = Pd(II) or Pt(II) were investigated. They are isostructural and crystallize in the monoclinic system, space group P2(1)/c with Z = 2. For the platinum (II) compound, the cell dimensions are a = 7.599(2), b = 9.513(2), c = 14.200(4) Angstrom and beta = 98.57(2)degrees. The structure was refined to R = 0.025 and wR = 0.030. It consists of square-planar [PtCl4](2-) anions and [OBG](2+) cations where [OBG](2+) is the bis-protonated form of the organic ligand ((octane-1,8-diyl)bis(guanidine)). The cation exhibits a center of symmetry and packs in an extended ''all-trans'' configuration. The Pt(II) and Pd(II) salts were screened for their antiamebic activity against an inoculum of 10(3) trophozoites of an Acanthameba strain implicated in an acanthamebic keratitis case. While the trophozoite inoculum was rapidly destroyed by the organic ligand, its Pt(II) salt was found exhibiting cytostatic effects. On the contrary, no effect was recorded for the Pd(II) salt. (C) 1997 Elsevier Science Inc. [References: 11]
机译:N,N'-(辛烷-1,8-二基)双(胍基)四氯铂酸酯(II)或钯酸酯(II)的合成和晶体结构[C10H26N6](2 +)[MCl(4)](2- ),其中M = Pd(II)或Pt(II)。它们是同构的,并且在单斜晶系系统中结晶,空间组P2(1)/ c,Z =2。对于铂(II)化合物,晶胞尺寸为a = 7.599(2),b = 9.513(2),c = 14.200(4)埃和beta = 98.57(2)度。将结构细化为R = 0.025和wR = 0.030。它由方形[PtCl4](2-)阴离子和[OBG](2+)阳离子组成,其中[OBG](2+)是有机配体的双质子化形式((辛烷-1,8-二基)双(胍))。阳离子表现出对称中心,并以扩展的“全反式”构型堆积。筛选了Pt(II)和Pd(II)盐对与棘阿米巴性角膜炎病例有关的棘阿米巴菌株的10(3)个滋养体接种物的抗厌氧活性。虽然滋养体接种物被有机配体迅速破坏,但发现其Pt(II)盐具有抑制细胞生长的作用。相反,没有记录到Pd(II)盐的作用。 (C)1997 Elsevier Science Inc. [参考:11]

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