首页> 外文期刊>Chemical research in toxicology >Application of Metabonomics in a Comparative Profiling Study Reveals N-Acetylfelinine Excretion as a Biomarker for Inhibition of the Farnesyl Pathway by Bisphosphonates
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Application of Metabonomics in a Comparative Profiling Study Reveals N-Acetylfelinine Excretion as a Biomarker for Inhibition of the Farnesyl Pathway by Bisphosphonates

机译:代谢组学在比较分析研究中的应用揭示了N-乙酰基丝氨酸排泄作为双膦酸盐抑制法呢基途径的生物标记。

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摘要

In this work,the results of metabolic profiling of urine from a preclinical comparative profiling study with the two biphosphonates ibandronate and zoledronate are reported.Toxicological assessment showed very different effects for the two compounds.Ibandronate did not cause major signs of toxicity,whereas zoledronate elicited hepatotoxicity and nephrotoxicity.Increased levels of urinary glucose and decreased levels of urinary creatinine detected by NMR also indicated drug-induced nephrotoxicity.Similarly,increased urinary levels of creatine and taurine indicated hepatotoxicty.Both organ toxicities were later confirmed by histopathology.In addition,the benefit of metabonomics as an open approach as compared to targeted methods was demonstrated by the identification of an unknown molecule in the urine of rats dosed with zoledronate.The structure elucidation revealed this molecule as N-acetylfelinine.Analysis of the pathways proposed for the biochemical synthesis of this molecule showed that the synthesis and excretion of N-acetylfelinine could easily be explained by drug-induced inhibition of farnesyl diphosphate synthase.This is the reported mode of action of bisphosphonates.Until now,N-acetylfelinine was exclusively observed in the urine of felidae species,where it is believed to be a precursor to a pheromone.
机译:在这项工作中,报告了一项临床前对比分析研究尿液的代谢分析结果,该研究采用了伊潘膦酸盐和唑来膦酸盐这两种双膦酸盐。毒理学评估表明,这两种化合物的作用差异很大。伊班膦酸盐没有引起重大的毒性迹象,而唑来膦酸盐引起核磁共振检测到的尿葡萄糖水平升高和尿肌酐水平降低也表明了药物诱导的肾毒性。同样,尿中肌酸和牛磺酸水平的升高也表明了肝毒性。鉴定唑来膦酸盐对大鼠尿液中未知分子的鉴定,证明了与靶向方法相比,代谢组学的优势是一种开放的方法,结构解析表明该分子为N-乙酰基felinine。对生化合成途径的分析该分子的通过药物诱导的法呢基二磷酸合酶的抑制可以很容易地解释N-乙酰基女性丝氨酸的合成和排泄。这是双膦酸盐的报道作用方式。到目前为止,N-乙酰基女性丝氨酸仅在猫科动物的尿液中观察到,其中据信它是信息素的前体。

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