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首页> 外文期刊>American Journal of Physiology >Protein restriction in lactation confers nephroprotective effects in the male rat and is associated with increased antioxidant expression.
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Protein restriction in lactation confers nephroprotective effects in the male rat and is associated with increased antioxidant expression.

机译:泌乳过程中的蛋白质限制赋予雄性大鼠肾脏保护作用,并与抗氧化剂表达增加有关。

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Telomere shortening has been implicated in the aging process and various age-associated disorders, including renal disease. Moreover, oxidative stress has been identified as an initiator of accelerated telomere shortening. We have shown previously that maternal protein restriction during lactation leads to reduced renal telomere shortening, reduced albuminuria, and increased longevity in rats. Here we address the hypothesis that maternal protein restriction during lactation is nephroprotective and associated with increased expression of antioxidative enzymes and decreased age-dependent renal telomere shortening. Newborn rats were suckled by a dam fed either a control (20% protein) or low-protein (8% protein) diet. All animals were weaned onto standard chow. Offspring that had been suckled by protein-restricted mothers had reduced albuminuria, N-acetyl-glucosaminidase, and urinary aldosterone excretion. These animals also did not show significant age-dependent renal telomere shortening and hence had significantly longer telomeres at 12 mo of age. This lack of renal telomere shortening was associated with increased levels of the antioxidant enzymes manganese superoxide dismutase, glutathione peroxidase, and glutathione reductase. These findings suggest that beneficial effects of slow growth during lactation are associated with increased antioxidant capacity and prevention of age-dependent telomere shortening in the kidney.
机译:端粒的缩短与衰老过程以及包括肾脏疾病在内的各种与年龄相关的疾病有关。此外,氧化应激已被鉴定为端粒加速缩短的引发剂。先前我们已经表明,哺乳期的母体蛋白质限制会导致大鼠肾脏端粒缩短减少,蛋白尿减少和寿命延长。在这里,我们解决了一个假设,即哺乳期母亲的蛋白质限制是肾保护性的,并且与抗氧化酶的表达增加和年龄依赖性的肾脏端粒缩短的减少有关。给新生大鼠喂饲对照(20%蛋白质)或低蛋白(8%蛋白质)饮食的水坝。将所有动物断奶至标准食物。受蛋白质限制的母亲哺乳的后代减少了蛋白尿,N-乙酰氨基葡萄糖苷酶和尿醛固酮排泄。这些动物也没有显示出明显的年龄依赖性肾脏端粒缩短,因此在12个月大时具有明显更长的端粒。缺乏肾素端粒缩短与抗氧化酶锰超氧化物歧化酶,谷胱甘肽过氧化物酶和谷胱甘肽还原酶水平升高有关。这些发现表明,泌乳过程中缓慢生长的有益作用与增加的抗氧化能力和防止肾脏中的年龄依赖性端粒缩短有关。

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