首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >Indicaxanthin from Opuntia ficus indica (L. Mill) Inhibits Oxidized LDL-Mediated Human Endothelial Cell Dysfunction through Inhibition of NF-κB Activation
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Indicaxanthin from Opuntia ficus indica (L. Mill) Inhibits Oxidized LDL-Mediated Human Endothelial Cell Dysfunction through Inhibition of NF-κB Activation

机译:仙人掌仙人掌中的靛蓝黄素通过抑制NF-κB活化来抑制氧化的LDL介导的人内皮细胞功能障碍。

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摘要

Oxidized low-density lipoproteins (oxLDL) play a pivotal role in the etiopathogenesis of atherosclerosis through the activation of inflammatory signaling events eventually leading to endothelial dysfunction and senescence. In the present work, we investigated the effects of indicaxanthin, a bioavailable, redox-modulating phytochemical from Opuntia ficus indica fruits, with anti-inflammatory activity, against oxLDL-induced endothelial dysfunction. Human umbilical vein cord cells (HUVEC) were stimulated with human oxLDL, and the effects of indicaxanthin were evaluated in a range between 5 and 20 μM, consistent with its plasma level after a fruit meal (7 μM). Pretreatment with indicaxanthin significantly and concentration-dependently inhibited oxLDL-induced cytotoxicity; ICAM-1, VCAM-1, and ELAM-1 increase; and ABC-A1 decrease of both protein and mRNA levels. From a mechanistic perspective, we also provided evidence that the protective effects of indicaxanthin were redox-dependent and related to the pigment efficacy to inhibit NF-κB transcriptional activity. In conclusion, here we demonstrate indicaxanthin as a novel, dietary phytochemical, able to exert significant protective vascular effects in vitro, at nutritionally relevant concentrations.
机译:氧化的低密度脂蛋白(oxLDL)通过激活炎症信号,最终导致内皮功能障碍和衰老,在动脉粥样硬化的发病中起着关键作用。在目前的工作中,我们调查了印度洋黄花素(一种来自印度仙人掌仙人掌的可生物利用的氧化还原调节植物化学物质,具有抗炎活性)对oxLDL诱导的内皮功能障碍的影响。用人oxLDL刺激人脐带静脉细胞(HUVEC),并在5至20μM的范围内评估了靛黄质的效果,与水果餐后血浆水平(7μM)一致。用吲哚黄质预处理可显着且浓度依赖性地抑制oxLDL诱导的细胞毒性; ICAM-1,VCAM-1和ELAM-1增加;和ABC-A1蛋白和mRNA水平均下降。从机理的角度来看,我们还提供了证据表明靛蓝黄质的保护作用是氧化还原依赖性的,并且与抑制NF-κB转录活性的色素功效有关。总之,在这里,我们证明了靛蓝黄素是一种新型的饮食植物化学物质,能够在营养相关浓度下在体外发挥重要的保护性血管作用。

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