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首页> 外文期刊>Journal of pharmacokinetics and pharmacodynamics >Assessing the dynamics of nuclear glucocorticoid-receptor complex: adding flexibility to gene expression modeling.
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Assessing the dynamics of nuclear glucocorticoid-receptor complex: adding flexibility to gene expression modeling.

机译:评估核糖皮质激素受体复合物的动力学:增加基因表达建模的灵活性。

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摘要

A retrospective analysis was performed to modify our fourth-generation pharmacodynamic model for glucocorticoid receptor (GR) dynamics with incorporation of more physiological features. This modified model was developed by integrating previously reported free cytosolic GR and GR mRNA data following single (10, 50 mg/kg) and dual (50 mg/kg at 0 and 24 hr) intravenous doses of methylprednisolone (MPL) in adrenalectomized (ADX) male Wistar rats with several in vitro studies describing real-time kinetics of the transfer of rat steroid-receptor complex from the cell cytosol to the nucleus. Additionally, free hepatic cytosolic GR and its mRNA data from a chronic infusion dosing study of MPL (0.1 and 0.3 mg/kg/hr) in male ADX Wistar rats were used to verify the predictability of the model. Incorporation of information regarding in vitro receptor kinetics allowed us to describe the receptor-mediated pharmacogenomic effects of MPL for a larger variety of genes in rat liver from microarray studies. These included early responsive gene like CCAAT/enhancer binding protein-beta (CEBP-beta), a transcription factor, as well as the later responsive gene for tyrosine aminotransferase (TAT), a classical biomarker of glucocorticoid (GC) genomic effects. This more mechanistic model of GR dynamics can be applied to characterize profiles for a greater number of genes in liver.
机译:进行了回顾性分析,以结合更多的生理特征来修改我们的第四代糖皮质激素受体(GR)动力学的药效学模型。通过在肾上腺切除术(ADX)中单次(10、50 mg / kg)和双次(50 mg / kg在0和24小时)静脉注射甲基强的松龙(MPL)后,整合先前报道的游离胞质GR和GR mRNA数据,开发出这种改良的模型)雄性Wistar大鼠进行了多项体外研究,描述了大鼠类固醇受体复合物从细胞溶质转移至细胞核的实时动力学。此外,使用雄性ADX Wistar大鼠MPL(0.1和0.3 mg / kg / hr)的长期输注剂量研究获得的游离肝胞质GR及其mRNA数据用于验证模型的可预测性。纳入有关体外受体动力学的信息使我们能够从微阵列研究中描述MPL对大鼠肝脏中更多基因的受体介导的药物基因组学作用。这些包括早期响应基因,如CCAAT /增强子结合蛋白-β(CEBP-beta),一个转录因子,以及酪氨酸转氨酶(TAT)的后一响应基因,它是糖皮质激素(GC)基因组效应的经典生物标志物。可以将这种更动态的GR动态机制模型用于表征肝脏中更多基因的概况。

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