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Comparison of TNFα to Lipopolysaccharide as an Inflammagen to Characterize the Idiosyncratic Hepatotoxicity Potential of Drugs: Trovafloxacin as an Example

机译:TNFα与脂多糖(一种炎症原)的比较,以表征药物的异特质肝毒性潜力:以曲伐沙星为例

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摘要

Idiosyncratic drug reactions (IDRs) are poorly understood, unpredictable, and not detected in preclinical studies. Although the cause of these reactions is likely multi-factorial, one hypothesis is that an underlying inflammatory state lowers the tolerance to a xenobiotic. Previously used in an inflammation IDR model, bacterial lipopolysaccharide (LPS) is heterogeneous in nature, making development of standardized testing protocols difficult. Here, the use of rat tumor necrosis factor-α (TNFα) to replace LPS as an inflammatory stimulus was investigated. Sprague-Dawley rats were treated with separate preparations of LPS or TNFα, and hepatic transcriptomic effects were compared. TNFα showed enhanced consistency at the transcriptomic level compared to LPS. TNFα and LPS regulated similar biochemical pathways, although LPS was associated with more robust inflammatory signaling than TNFα. Rats were then codosed with TNFα and trovafloxacin (TVX), an IDR-associated drug, and evaluated by liver histopathology, clinical chemistry, and gene expression analysis. TNFα/TVX induced unique gene expression changes that clustered separately from TNFα/levofloxacin, a drug not associated with IDRs. TNFα/TVX cotreatment led to autoinduction of TNFα resulting in potentiation of underlying gene expression stress signals. Comparison of TNFα/TVX and LPS/TVX gene expression profiles revealed similarities in the regulation of biochemical pathways. In conclusion, TNFα could be used in lieu of LPS as an inflammatory stimulus in this model of IDRs.
机译:临床前研究对特异药物反应(IDR)知之甚少,不可预测且未发现。尽管这些反应的原因可能是多因素的,但一种假设是潜在的炎症状态降低了对异源生物的耐受性。以前用于炎症IDR模型的细菌脂多糖(LPS)本质上是异质的,因此很难开发标准化的测试方案。在这里,研究了使用大鼠肿瘤坏死因子-α(TNFα)替代LPS作为炎症刺激。 Sprague-Dawley大鼠用单独的LPS或TNFα制剂治疗,并比较了肝转录组的作用。与LPS相比,TNFα在转录组水平上显示出增强的一致性。 TNFα和LPS调节相似的生化途径,尽管LPS比TNFα具有更强的炎症信号传导。然后,将大鼠与TNFα和曲妥沙星(TVX)(一种与IDR相关的药物)共用,并通过肝脏组织病理学,临床化学和基因表达分析进行评估。 TNFα/ TVX诱导独特的基因表达变化,与与IDR不相关的药物TNFα/左氧氟沙星分开聚集。 TNFα/ TVX协同治疗导致TNFα的自诱导,导致潜在的基因表达应激信号增强。 TNFα/ TVX和LPS / TVX基因表达谱的比较揭示了在生化途径调控中的相似性。总之,在该IDRs模型中,TNFα可以代替LPS作为炎症刺激。

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