首页> 美国卫生研究院文献>Pharmaceutics >Tissue Specific Modulation of cyp2c and cyp3a mRNA Levels and Activities by Diet-Induced Obesity in Mice: The Impact of Type 2 Diabetes on Drug Metabolizing Enzymes in Liver and Extra-Hepatic Tissues
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Tissue Specific Modulation of cyp2c and cyp3a mRNA Levels and Activities by Diet-Induced Obesity in Mice: The Impact of Type 2 Diabetes on Drug Metabolizing Enzymes in Liver and Extra-Hepatic Tissues

机译:饮食引起的小鼠体内cyp2c和cyp3a mRNA的组织特异性调节和活性:2型糖尿病对肝脏和肝外组织药物代谢酶的影响

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摘要

Various diseases such as type 2 diabetes (T2D) may alter drug clearance. The objective of this study was to evaluate the effects of T2D on CYP450 expressions and activities using high-fat diet (HFD) as a model of obesity-dependent diabetes in C57BL6 mice. The cyp450 mRNA expression levels for 15 different isoforms were determined in the liver and extra-hepatic tissues (kidneys, lungs and heart) of HFD-treated animals (n = 45). Modulation of cyp450 metabolic activities by HFD was assessed using eight known substrates for specific human ortholog CYP450 isoforms: in vitro incubations were conducted with liver and extra-hepatic microsomes. Expression levels of cyp3a11 and cyp3a25 mRNA were decreased in the liver (>2–14-fold) and kidneys (>2-fold) of HFD groups which correlated with a significant reduction in midazolam metabolism (by 21- and 5-fold in hepatic and kidney microsomes, respectively, p < 0.001). HFD was associated with decreased activities of cyp2b and cyp2c subfamilies in all organs tested except in the kidneys (for tolbutamide). Other cyp450 hepatic activities were minimally or not affected by HFD. Taken together, our data suggest that substrate-dependent and tissue-dependent modulation of cyp450 metabolic capacities by early phases of T2D are observed, which could modulate drug disposition and pharmacological effects in various tissues.
机译:诸如2型糖尿病(T2D)等各种疾病可能会改变药物清除率。这项研究的目的是评估高脂饮食(HFD)作为C57BL6小鼠肥胖依赖性糖尿病的模型,T2D对CYP450表达和活性的影响。在HFD治疗的动物(n = 45)的肝脏和肝外组织(肾脏,肺和心脏)中测定了15种不同亚型的cyp450 mRNA表达水平。使用八种已知的特定人类直系同源CYP450亚型的底物评估了HFD对cyp450代谢活性的调节:用肝脏和肝外微粒体进行体外培养。 CYP3a11和cyp3a25 mRNA的表达水平在HFD组的肝脏(> 2-14倍)和肾脏(> 2倍)中降低,这与咪达唑仑的代谢显着降低(在肝脏中降低21倍和5倍)相关和肾微粒体,分别为p <0.001)。 HFD与除肾脏(甲苯磺丁酰胺)以外的所有受测器官中cyp2b和cyp2c亚家族的活性降低有关。其他cyp450肝活动受HFD影响很小或不受其影响。两者合计,我们的数据表明观察到T2D的早期阶段对cyp450代谢能力的底物依赖性和组织依赖性调节,这可以调节各种组织中的药物处置和药理作用。

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