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Liver S9 Fraction-Derived Metabolites of Curcumin Analogue UBS109

机译:姜黄素类似物UBS109的肝S9分数衍生代谢产物

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To address the shortcomings of the natural product curcumin, many groups have created analogues that share similar structural features while displaying superior properties, particularly in anticancer drug discovery. Relatively unexplored have been the mechanisms by which such compounds are metabolized. A comprehensive in vitro study of a curcumin analogue (UBS109) in liver S9 fractions from five different species is presented. Further, we examine the cell-based bioactivity of the major metabolites. In spite of the fact that UBS109 reduces tumor growth in mice, it is quickly metabolized in vitro and 94% protein bound in mouse plasma. The primary monounsaturated metabolite is only modestly bioactive against MDA-MB-231 breast cancer cells. These observations suggest that while the α,β-unsaturated ketone common to curcumin analogues is important for bioactivity, protein binding and tissue distribution may serve to protect UBS109 from full metabolism in vivo while allowing it to exert a pharmacological effect by means of slow drug release.
机译:为了解决天然产物姜黄素的缺点,许多小组创造了具有相似结构特征同时显示出优异性能的类似物,特别是在抗癌药物发现方面。相对未知的机制是这类化合物的代谢机制。提出了对来自五个不同物种的肝脏S9组分中姜黄素类似物(UBS109)的全面体外研究。此外,我们检查了主要代谢产物的基于细胞的生物活性。尽管UBS109会降低小鼠的肿瘤生长,但它在体外迅速代谢,在小鼠血浆中结合了94%的蛋白质。主要的单不饱和代谢物仅对MDA-MB-231乳腺癌细胞具有中等生物活性。这些观察结果表明,尽管姜黄素类似物共有的α,β-不饱和酮对生物活性很重要,但蛋白质结合和组织分布可能有助于保护UBS109免受体内的新陈代谢,同时通过缓慢的药物释放而发挥药理作用。 。

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