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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >HPLC-DAD and MS/MS analysis of novel drug candidates from the group of aromatic hydrazones revealing the presence of geometric isomers.
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HPLC-DAD and MS/MS analysis of novel drug candidates from the group of aromatic hydrazones revealing the presence of geometric isomers.

机译:芳族类化合物中新候选药物的HPLC-DAD和MS / MS分析表明存在几何异构体。

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摘要

Salicylaldehyde isonicotinoyl hydrazone (SIH) is an iron-chelating aromatic hydrazone with promising pharmacological properties. However, it suffers from relatively short biological half-life. Hence, two novel derivates of SIH, HAP-INH and HPP-INH were synthesized in order to overcome this pharmacokinetic drawback. The aim of the present study was to employ HPLC-DAD and HPLC-MS/MS methods to investigate the identity of the putative impurities of these newly prepared substances, which are being formed in aqueous environment. At first, it was shown that their retention times as well as UV spectra did not correspond to any expected synthetic precursor, by-product or degradation product. HPLC-DAD analysis confirmed purity of peaks and revealed close but not identical UV spectra of putative impurities and corresponding hydrazones. The subsequent HPLC-MS/MS analyses using ESI and the ion trap mass analyzer showed the identical molecular ions (in both modes) as well as their fragmentation, which implicated presence of geometric isomers. This suggestion was further supported by the NMR analyses. Since the Z/E isomers can have different biological activities, results of this study might be of great importance for further development of the aroylhydrazones as novel drug candidates as well as from the theoretical point of view.
机译:水杨醛异烟酰yl(SIH)是一种铁螯合芳族hydr,具有良好的药理特性。但是,它的生物半衰期相对较短。因此,为了克服该药代动力学缺陷,合成了两种新型的SIH,HAP-INH和HPP-INH衍生物。本研究的目的是采用HPLC-DAD和HPLC-MS / MS方法研究在水环境中形成的这些新制备物质的推定杂质的身份。首先,表明它们的保留时间以及紫外光谱与任何预期的合成前体,副产物或降解产物都不对应。 HPLC-DAD分析确认了峰的纯度,并揭示了推定的杂质和相应的的近紫外光谱,但不完全相同。随后使用ESI和离子阱质量分析仪进行的HPLC-MS / MS分析显示相同的分子离子(在两种模式下)及其碎片化,暗示存在几何异构体。 NMR分析进一步支持了这一建议。由于Z / E异构体可能具有不同的生物学活性,因此本研究的结果对于芳酰drug作为新型药物候选物以及从理论上来说的进一步发展可能具有重要意义。

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