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Pharmacokinetics and Pharmacodynamics of Curcumin in regulating anti‐inflammatory and epigenetic gene expression

机译:调节抗炎和表观遗传基因表达姜黄素的药代动力学和药效学

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Abstract Chronic inflammation is a key driver of cancer development. Nitrite levels, which are regulated by inducible nitric oxide synthase (iNOS), play a critical role in inflammation. While the anti‐oxidant and anti‐inflammatory effects of curcumin, a natural product present in the roots of Curcuma longa have been studied widely, the acute pharmacokinetics (PK) and pharmacodynamics (PD) of curcumin in suppressing pro‐inflammatory markers and epigenetic modulators remain unclear. This study evaluated the PK and PD of curcumin‐induced suppression of lipopolysaccharide (LPS)‐mediated inflammation in rat lymphocytes. LPS was administered intravenously either alone or with curcumin to female Sprague–Dawley rats. Plasma samples were analysed for curcumin concentration and mRNA expression was quantified in lymphocytes. The relative gene expression of several inflammatory and epigenetic modulators was analysed. To investigate the relationship between curcumin concentration and iNOS, TNF‐α, and IL‐6 gene expression, PK/PD modeling using Jusko's indirect response model (IDR) integrating transit compartments (TC) describing the delayed response was conducted. The concentration–time profile of curcumin exhibited a bi‐exponential decline, which was well described by a two‐compartmental pharmacokinetic model. Importantly the results demonstrate that LPS induced gene expression of pro‐inflammatory markers in lymphocytes, with peak expression at approximately 3?h and curcumin suppressed the gene expression in animals administered with LPS. These effects were well captured using the IDR model and an IDR model with the transit compartments. In summary, the PK/PD modeling approach could potentially provide a robust quantitative framework for evaluating the acute anti‐inflammatory and epigenetic effects of curcumin in future clinical trials.
机译:摘要慢性炎症是癌症发展的关键驱动因素。通过诱导型一氧化氮合酶(InOS)调节的亚硝酸盐水平在炎症中起重要作用。虽然姜黄素的抗氧化剂和抗炎作用,但是在抑制促炎症标记和表观遗传调节剂的姜黄素中的急性药代动力学(PK)和药效学(PD)的抗氧化剂和抗炎作用。仍然不清楚。该研究评估了姜黄素诱导的脂多糖(LPS)介导的大鼠淋巴细胞炎症的PK和Pd。 LPS单独或用姜黄素静脉内施用,以雌性Sprague-Dawley大鼠。分析硫蛋白浓度的等离子体样品,并在淋巴细胞中定量mRNA表达。分析了几种炎症和表观遗传调节剂的相对基因表达。为了研究姜黄素浓度和InOS,TNF-α和IL-6基因表达的关系,使用Jusko的间接响应模型(IDR)集成了描述延迟响应的转运隔室(TC)的PK / PD建模。姜黄素的浓度 - 时间分布表现出双级指数下降,这是由一个双隔室药代动力学模型描述的。重要的是,结果表明,LPS诱导淋巴细胞中促炎症标记物的基因表达,峰表达约为3μm,姜黄素抑制了用LPS给药的动物中的基因表达。使用IDR模型和带有传输舱的IDR模型的良好捕获这些效果。总之,PK / PD建模方法可能提供稳健的定量框架,用于评估未来临床试验中姜黄素的急性抗炎和表观遗传效应。

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