首页> 美国卫生研究院文献>Frontiers in Pharmacology >Dual Role of Dietary Curcumin Through Attenuating AFB1-Induced Oxidative Stress and Liver Injury via Modulating Liver Phase-I and Phase-II Enzymes Involved in AFB1 Bioactivation and Detoxification
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Dual Role of Dietary Curcumin Through Attenuating AFB1-Induced Oxidative Stress and Liver Injury via Modulating Liver Phase-I and Phase-II Enzymes Involved in AFB1 Bioactivation and Detoxification

机译:膳食姜黄素通过减轻AFB1诱导的氧化应激和肝损伤的双重作用,其通过调节参与AFB1生物活化和排毒的肝脏I和II期酶来实现

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摘要

It is well understood that liver cytochrome p450 enzymes are responsible for AFB1 bioactivation, while phase-II enzymes regulated by the transcription factor nuclear factor-erythroid-2-related factor 2 (Nrf2) are involved in detoxification of AFB1. In this study, we explored the potential of curcumin to prevent AFB1-induced liver injury by modulating liver phase-I and phase-II enzymes along with Nrf2 involved in AFB1 bioactivation and detoxification. Arbor Acres broiler were divided into four groups including control group (G1; fed only basal feed), curcumin alone-treated group (G2; 450 mg/kg feed), AFB1-fed group (G3; 5 mg/kg feed), and curcumin plus AFB1 group (G4; 5 mg AFB1+450 mg curcumin/kg feed). After 28 days, liver and blood samples were collected for different analyses. Histological and phenotypic results revealed that AFB1-induced liver injury was partially ameliorated by curcumin supplementation. Compared to AFB1 alone-treated group, serum biochemical parameters and liver antioxidant status showed that curcumin supplementation significantly prevented AFB1-induced liver injury. RT-PCR and western blot results revealed that curcumin inhibited CYP enzymes-mediated bioactivation of AFB1 at mRNA and protein level. Transcription factor Nrf2, its downstream genes such as GSTA3, and GSTM2 mRNA, and protein expression level significantly upregulated via dietary curcumin. In addition, GSTs enzyme activity was enhanced with dietary curcumin which plays a crucial role in AFB1-detoxification. Conclusively, the study provided a scientific basis for the use of curcumin in broiler’s diet and contributed to explore the multi-target preventive actions of curcumin against AFB1-induced liver injury through the modulation of phase-I and phase-II enzymes, and its potent anti-oxidative effects.
机译:众所周知,肝细胞色素p450酶负责AFB1的生物活化,而受转录因子核因子-类胡萝卜素2相关因子2(Nrf2)调节的II期酶则参与了AFB1的解毒。在这项研究中,我们探索了姜黄素通过调节肝脏I相和II相酶以及参与AFB1生物激活和排毒的Nrf2来预防AFB1诱导的肝损伤的潜力。 Arbor Acres肉鸡分为四组,包括对照组(G1;仅饲喂基础饲料),姜黄素单独治疗组(G2; 450 mg / kg饲料),AFB1饲喂组(G3; 5 mg / kg饲料)和姜黄素加AFB1组(G4; 5 mg AFB1 + 450 mg姜黄素/ kg饲料)。 28天后,收集肝脏和血液样本进行不同的分析。组织学和表型结果表明,补充姜黄素可部分缓解AFB1引起的肝损伤。与单独使用AFB1的组相比,血清生化参数和肝脏抗氧化状态表明,补充姜黄素可明显预防AFB1引起的肝损伤。 RT-PCR和蛋白质印迹结果显示姜黄素在mRNA和蛋白质水平上抑制CYP酶介导的AFB1的生物活化。转录因子Nrf2,其下游基因(如GSTA3和GSTM2 mRNA)以及蛋白质表达水平通过饮食姜黄素显着上调。此外,饮食姜黄素可增强GSTs的酶活性,而姜黄素在AFB1排毒中起关键作用。结论是,该研究为肉鸡日粮中姜黄素的使用提供了科学依据,并有助于探索姜黄素通过调节I相和II相酶对AFB1诱导的肝损伤的多目标预防作用,以及其有效作用。抗氧化作用。

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