首页> 外文期刊>The British Journal of Nutrition >A whey-based glutathione-enhancing diet decreases allergen-induced airway contraction in a guinea-pig model of asthma.
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A whey-based glutathione-enhancing diet decreases allergen-induced airway contraction in a guinea-pig model of asthma.

机译:在哮喘的豚鼠模型中,以乳清为基础的谷胱甘肽增强饮食可以减少过敏原引起的气道收缩。

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Since an allergen-induced early asthmatic reaction is likely to be accompanied by oxidative stress and since levels of the endogenous antioxidant glutathione can be enhanced by a whey-based diet (undenatured whey protein concentrate, UWPC), it was investigated whether UWPC could alleviate allergen-induced lung contractions. Guinea pigs were fed water or UWPC twice a day starting at day --3 up to day 20. The animals were sensitised to ovalbumin or received saline on day 0. Serum samples were taken at several days after sensitisation to measure allergen-specific IgG. On day 20, lungs were isolated and perfused with buffer containing the allergen ovalbumin. Airway contractions were assessed, and mediators and indicators for oxidative stress were measured in the lung effluent. Moreover, glutathione levels were determined in the liver. The indicator of oxidative stress and airway contractile mediator, 8-iso-PGF2 alpha, was increased upon ovalbumin challenge in ovalbumin-sensitised groups. Furthermore, thiobarbituric acid-reactive substances (TBARS) were increased as well. Sensitisation with ovalbumin increased IgG levels from day 12 up to day 20, which were not influenced by the UWPC diet. In contrast, the UWPC diet significantly enhanced glutathione levels in the liver. Moreover, the UWPC diet significantly reduced the ovalbumin-induced anaphylactic response by 45% and decreased PGE2 levels by 55% in the effluent fluid. We show for the first time that during anaphylaxis, there is acute oxidative stress in the respiratory tract. The UWPC diet did not influence the sensitisation response to the allergen but did increase endogenous glutathione levels. The UWPC diet profoundly reduces allergen-induced airway constrictions, which opens new avenues for dietary management of allergic diseases.
机译:由于过敏原诱导的早期哮喘反应可能伴随氧化应激,并且由于乳清饮食(未变性乳清蛋白浓缩物,UWPC)可以提高内源性抗氧化剂谷胱甘肽的水平,因此研究了UWPC是否可以缓解过敏原引起的肺收缩。从第--3天到第20天,每天给豚鼠喂两次水或UWPC,从第0天起使它们对卵白蛋白致敏或接受盐水。致敏后数天取血清样品,以测量过敏原特异性IgG。在第20天,分离肺并用含有变应原卵清蛋白的缓冲液灌注。评估气道收缩,并测量肺排出物中的氧化应激介质和指标。此外,确定了肝脏中的谷胱甘肽水平。卵清蛋白致敏组中,卵清蛋白激发后,氧化应激和气道收缩介质八- iso -PGF 的指标增加。此外,硫代巴比妥酸反应性物质(TBARS)也增加了。从卵白蛋白增敏从第12天到第20天会增加IgG水​​平,这不受UWPC饮食的影响。相反,UWPC饮食显着提高了肝脏中的谷胱甘肽水平。此外,UWPC饮食能显着降低卵白蛋白引起的过敏反应,降低废水中PGE 2 的水平达55%。我们首次表明,在过敏反应期间,呼吸道中存在急性氧化应激。 UWPC饮食不影响对过敏原的致敏反应,但确实增加了内源性谷胱甘肽水平。 UWPC饮食极大地减少了过敏原引起的气道收缩,为过敏性疾病的饮食管理开辟了新途径。

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