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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Metabolism and Effects on Endogenous Metabolism of Paracetamol (Acetaminophen) in a Porcine Model of Liver Failure
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Metabolism and Effects on Endogenous Metabolism of Paracetamol (Acetaminophen) in a Porcine Model of Liver Failure

机译:代谢和对乙酰氨基酚(乙酰氨基酚)在肝衰竭的猪模型中的内源代谢的影响

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The metabolic fate, toxicity, and effects on endogenous metabolism of paracetamol (acetaminophen, APAP) in 22 female Landrace cross large white pigs were evaluated in a model of acute liver failure (ALF). Anesthetized pigs were initially dosed at 250 mg/kg via an oroduodenal tube with APAP serum concentrations maintained above 300 mg/l using maintenance doses of 0.5-4 g/h until ALF. Studies were undertaken to determine both the metabolic fate of APAP and its effects on the endogenous metabolic phenotype of ALF in using H-1 NMR spectroscopy. Increased concentrations of citrate combined with pre-ALF increases in circulating lactate, pyruvate, and alanine in plasma suggest mitochondrial dysfunction and a switch in hepatic energy metabolism to glycolysis in response to APAP treatment. A specific liquid chromatography-tandem mass spectrometry assay was used to quantify APAP and metabolites. The major circulating and urinary metabolite of APAP was the phenolic glucuronide (APAP-G), followed by p-aminophenol glucuronide (PAP-G) formed from N-deacetylated APAP. The PAP produced by N-deacetylation was the likely cause of the methemoglobinemia and kidney toxicity observed in this, and previous, studies in the pig. The phenolic sulfate of APAP, and the glutathione-derived metabolites of the drug were only found as minor components (with the cysteinyl conjugate detected but not the mercapturate). Given its low sulfation, combined with significant capacity for N-deacetylation the pig may represent a poor translational model for toxicology studies for compounds undergoing significant metabolism by sulfation, or which contain amide bonds which when hydrolyzed to unmask an aniline lead to toxicity. However, the pig may provide a useful model where extensive amide hydrolysis is seen for drugs or environmental chemicals in humans, but not in, eg, the rat and dog which are the preclinical species normally employed for safety assessment.
机译:在急性肝功能衰竭(ALF)的模型中,评估了22例雌性地拉族杂交大白猪的对扑热息痛(乙酰氨基酚,APAP)内源性代谢的代谢命运,毒性和影响。在使用0.5-4g / h的维持剂量为300mg / l以上,血清血清浓度最初用α0mg/ kg给出250mg / kg的麻醉猪。进行研究以确定APAP的代谢命运及其对使用H-1 NMR光谱法的内源代谢表型的影响。将柠檬酸盐的浓度增加与ALF前循环乳酸,丙酮酸和丙氨酸在血浆中的丙酸盐增加,响应于APAP治疗,对乙酰己酰基的线粒体功能障碍和肝脏能量代谢的开关。使用特定的液相色谱 - 串联质谱法测量APAP和代谢物。 APAP的主要循环和尿代谢物是酚醛葡糖(APAP-G),其次是由N-脱乙酰化APAP形成的氨基苯酚葡糖醛(PAP-G)。 N-Deoetylation产生的PAP是在这方面观察到的甲霉素和肾毒性和肾毒性的可能原因,并在猪中研究。 APAP的酚醛硫酸盐和药物的谷胱甘肽衍生的代谢物仅被发现为次要组分(用膀胱酰基缀合物检测但不是巯基酯)。鉴于其低硫酸化,与N-脱乙酰化的显着能力合并猪可以代表毒理学研究的差异转化模型,用于通过硫化进行显着代谢的化合物,或者含有酰胺键,其在水解以取代苯胺时导致厌氧。然而,猪可以提供一种有用的模型,其中用于人类的药物或环境化学品,但不是例如通常用于安全评估的临床前物种的药物或环境化学品。

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