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首页> 外文期刊>The Journal of Nutritional Biochemistry >Supplementation of a gamma-tocopherol-rich mixture of tocopherols in healthy men protects against vascular endothelial dysfunction induced by postprandial hyperglycemia.
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Supplementation of a gamma-tocopherol-rich mixture of tocopherols in healthy men protects against vascular endothelial dysfunction induced by postprandial hyperglycemia.

机译:在健康男性中补充富含γ-生育酚的生育酚混合物可预防餐后高血糖引起的血管内皮功能障碍。

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Postprandial hyperglycemia induces oxidative stress responses, impairs vascular endothelial function (VEF) and increases the risk of cardiovascular disease. We hypothesized that the antioxidant and anti-inflammatory activities of a gamma-tocopherol-rich mixture of tocopherols ( gamma-TmT) would protect against vascular dysfunction that is otherwise caused by postprandial hyperglycemia by decreasing oxidative stress and proinflammatory responses, and improving nitric oxide (NO*) homeostasis. In a randomized, crossover study, healthy men (n=15; 21.8+or-0.8 years) completed a fasting oral glucose challenge (75 g) with or without prior supplementation of gamma-TmT (5 days). Brachial artery flow-mediated dilation (FMD), plasma glucose, insulin, antioxidants, malondialdehyde (MDA), inflammatory proteins, arginine and asymmetric dimethylarginine (ADMA) were measured at regular intervals during a 3-h postprandial period. Supplementation of gamma-TmT increased (P<.05) plasma gamma-T by threefold and gamma-carboxyethyl-hydroxychroman by more than ninefold without affecting alpha-T, glucose, arginine or ADMA. Baseline FMD, MDA, arginine and ADMA were unaffected by gamma-TmT (P>.05). Postprandial FMD decreased 30%-44% (P<.05) following glucose ingestion, but was maintained with gamma-TmT. Supplementation of gamma-TmT also attenuated postprandial increases in MDA that occurred following glucose ingestion. Plasma arginine decreased (P<.05) in both trials to a similar extent regardless of gamma-TmT supplementation. However, the ratio of ADMA/arginine increased time-dependently in both trials (P<.05), but to a lesser extent following gamma-TmT supplementation (P<.05). Inflammatory proteins were unaffected by glucose ingestion or gamma-TmT. Collectively, these findings support that short-term supplementation of gamma-TmT maintains VEF during postprandial hyperglycemia possibly by attenuating lipid peroxidation and disruptions in NO* homeostasis, independent of inflammation. All rights reserved, Elsevier.
机译:餐后高血糖会诱发氧化应激反应,损害血管内皮功能(VEF),并增加罹患心血管疾病的风险。我们假设富含γ-生育酚的生育酚混合物(γ-TmT)的抗氧化和抗炎活性将通过减少氧化应激和促炎反应并改善一氧化氮来防止餐后高血糖引起的血管功能障碍。 NO *)动态平衡。在一项随机,交叉研究中,健康男性(n = 15; 21.8+或-0.8岁)完成了空腹口服葡萄糖挑战(75 g),有或没有事先补充γ-TmT(5天)。在餐后3小时内定期测量肱动脉血流介导的扩张(FMD),血浆葡萄糖,胰岛素,抗氧化剂,丙二醛(MDA),炎症蛋白,精氨酸和不对称二甲基精氨酸(ADMA)。补充γ-TmT可使血浆γ-T增加(P <.05)三倍,而γ-羧乙基-羟基苯并二氢吡喃则增加九倍以上,而不会影响α-T,葡萄糖,精氨酸或ADMA。基线FMD,MDA,精氨酸和ADMA不受γ-TmT的影响(P> 0.05)。葡萄糖摄入后餐后FMD降低30%-44%(P <.05),但γ-TmT维持该水平。补充γ-TmT还可以减轻葡萄糖摄入后餐后MDA的升高。在两项试验中,无论是否补充γ-TmT,血浆精氨酸均降低(P <.05)。但是,在两个试验中,ADMA /精氨酸的比率均随时间增加(P <.05),但在补充γ-TmT后程度较小(P <.05)。炎症蛋白不受葡萄糖摄入或γ-TmT的影响。总的来说,这些发现支持在餐后高血糖期间短期补充γ-TmT可以维持VEF,这可能是通过减弱脂质过氧化和破坏NO *稳态而与炎症无关。保留所有权利,Elsevier。

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