首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >New insights into the chemical structure and composition of the pentavalent antimonial drugs, meglumine antimonate and sodium stibogluconate
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New insights into the chemical structure and composition of the pentavalent antimonial drugs, meglumine antimonate and sodium stibogluconate

机译:五价锑药物,葡甲胺锑酸盐和司考葡糖酸钠的化学结构和组成的新见解

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The chemical structures of the pentavalent antimonial drugs, meglumine antimonate (MA) and sodium stibogluconate (SSG), were reevaluated using electrospray ionization mass spectrometry (ESI-MS) and osmolarity measurements. Both MA and SSG were found to contain 1: 1. 1:2 2:2 and 2:3 Sb-V-ligand complexes. ESI-MS analysis of MA showed negatively-charged 1: 1 (m/z 364) and 2:2 (m/z 765) Sb-V-meglumine complexes, supporting the predominance of zwitterionic species in solution. Our data are consistent with a structure for the 1:2 Sb-V-meglumine, which differs from that previously postulated, with two positively-charged amino groups and one negatively-charged antimonate group. Instead of the commonly hypothesized structure for SSG, in which two Sb atoms are linked by an oxygen, an alternative structure is proposed, based on the ability of Sb-V-gluconate complexes to polymerize. MA (or SSG) in concentrated aqueous solutions, such as of MA (or SSG) in its commercial form, is expected to consist mainly of a mixture of 2:2, 2:3 and 2:1 Sb-V-ligand complexes, as suggested by the 2:1 Sb-to-particle ratio found by osmometry. 1: 1 Sb-V-ligand complexes in MA and SSG are expected to play an important pharmacological role, as suggested by the slow increase of osmolarity of MA solution upon dilution at 37 degrees C (half-time of 20 min). (c) 2007 Elsevier Inc. All rights reserved.
机译:使用电喷雾电离质谱(ESI-MS)和渗透压测量重新评估了五价锑药物,葡甲胺葡萄糖酸盐(MA)和司妥葡糖酸钠(SSG)的化学结构。发现MA和SSG均包含1:1、1:2 2:2和2:3 Sb-V-配体复合物。对MA的ESI-MS分析显示,Sb-V-葡甲胺络合物的电荷呈1:1:1(m / z 364)和2:2(m / z 765)负电荷,支持溶液中两性离子物种占优势。我们的数据与1:2 Sb-V-葡甲胺的结构是一致的,该结构不同于先前假定的结构,具有两个带正电荷的氨基和一个带负电荷的锑酸盐基团。代替通常假设的SSG结构(其中两个Sb原子通过氧连接),基于Sb-V-葡萄糖酸盐络合物的聚合能力,提出了一种替代结构。浓缩水溶液中的MA(或SSG),例如市售形式的MA(或SSG),预计主要由2:2、2:3和2:1 Sb-V-配体络合物的混合物组成,如通过渗透压法发现的2:1 Sb /粒子比所建议的那样。如MA和SSG中1:1的Sb-V-配体复合物有望发挥重要的药理作用,这是由于在37摄氏度(20分钟的一半时间)稀释后MA溶液的渗透压缓慢增加所表明。 (c)2007 Elsevier Inc.保留所有权利。

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