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Investigation of the stability of aromatic hydrazones in plasma and related biological material.

机译:血浆和相关生物材料中芳香的稳定性研究。

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摘要

Novel aromatic hydrazones derived from pyridoxal isonicotinoyl hydrazone (PIH) are interesting compounds from the viewpoint of their pharmacodynamic activity. However, they were recently shown to suffer from relatively short biological half-lives. The purpose of the present study was to investigate the stability of novel aroylhydrazones in plasma and related biological media in order to reveal its potential involvement in the pharmacokinetics of these drugs. Three different aroylhydrazones (pyridoxal isonicotinoyl hydrazone - PIH, salicylaldehyde isonicotinoyl hydrazone - SIH and pyridoxal 2-chlorobenzoyl hydrazone - o-108) were incubated in plasma from different species, plasma ultrafiltrate, bovine serum albumin, RPMI cell medium and phosphate buffer saline (PBS) at 37 degrees C. Stability of these compounds was determined using precise, selective and validated HPLC methods. Although the aroylhydrazones were relatively stable in PBS, they underwent rapid degradation in plasma. Plasma proteins as wellas low molecular weight components were involved in this matter. Furthermore, the products of hydrazone bond splitting revealed in this study were also found in the chromatograms from pharmacokinetic experiments. In the light of short biological half-lives determined in vivo, these in vitro findings strongly suggest that hydrolysis of investigated aromatic hydrazones in plasma could have a significant impact on their pharmacokinetics. Furthermore, these results also suggest that plasma stability of other novel drug candidates containing the hydrazone bond deserves to be considered.
机译:从它们的药效学活性来看,衍生自吡ido醛异烟酰yl(PIH)的新型芳香是有趣的化合物。然而,最近显示它们具有较短的生物学半衰期。本研究的目的是研究新型芳酰hydr在血浆和相关生物介质中的稳定性,以揭示其潜在参与这些药物的药代动力学。在不同物种的血浆,血浆超滤液,牛血清白蛋白,RPMI细胞培养基和磷酸盐缓冲液(PBS)中孵育三种不同的芳酰hydr(吡ox醛异烟酰yl-PIH,水杨醛异烟酰-SIH和吡x醛2-氯苯甲酰--o-108)。 )在37摄氏度下进行。使用精确,选择性和经过验证的HPLC方法确定了这些化合物的稳定性。尽管芳酰hydr在PBS中相对稳定,但它们在血浆中迅速降解。血浆蛋白以及低分子量成分也参与了这一过程。此外,从药代动力学实验得到的色谱图中还发现了该研究中发现的键裂解产物。鉴于体内确定的短的生物半衰期,这些体外发现强烈表明血浆中研究的芳香aromatic的水解可能对其药代动力学有重大影响。此外,这些结果还表明,值得考虑的其他具有the键的新型候选药物的血浆稳定性。

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