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Alterations in indices of oxidative stress and diabetes in type I diabetic rats on a low-carbohydrate diet and pycnogenol.

机译:低碳水化合物饮食和碧萝ogen对I型糖尿病大鼠的氧化应激和糖尿病指数的变化。

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摘要

Glucose, the major fuel for most body tissues, derives largely from ingested carbohydrates. Considering that a primary feature of diabetes is persistent hyperglycemia, reducing exogenous carbohydrates is expected to moderate absolute serum glucose values and oscillations. Chronically elevated glucose levels are known to increase oxidative stress in tissues amongst other effects, and lead to late and chronic complications in kidney, eye and the cardiovascular system. The objective of this study was to evaluate the impact of a very low-carbohydrate diet alone or with addition of pycnogenol, a potent antioxidant, on biomarkers of oxidative stress in various body organs as well as on physiological indices of diabetes in a Type 1 diabetes (streptozotocin induced) model. In diabetic rats at both 30 and 90 days, the low-carbohydrate diet (27% protein, 5-12% carbohydrate, 62-68% fat) significantly reduced blood glucose, glycated hemoglobin, alanine aminotransferase and normalized aspartate aminotransferase, implying less damage to tissues than a standard rat chow (27% protein, 61% carbohydrate, 12% fat). The test diet greatly minimized polyuria, polydipsia, polyphagia and loose stool in diabetics. It further improved fasting triglycerides and HDL cholesterol, blood urea nitrogen and creatinine. In both studies, diabetes-induced alterations in cardiac catalase and glutathione peroxidase, hepatic gamma-glutamyl transpeptidase and erythrocyte malondialdehyde were ameliorated or normalized by the test diet. Addition of pycnogenol reduced serum alkaline phosphatase, triglycerides, total cholesterol, liver gamma-glutamyl transpeptidase, renal glutathione peroxidase and renal reduced glutathione. It increased cardiac and renal glutathione to oxidized glutathione ratio. In non-diabetics the low-carbohydrate diet elevated serum alkaline phosphatase, total and HDL cholesterol and reduced water intake. It reduced liver and kidney catalase. Pycnogenol had beneficial effects on blood malondialdehyde and glutathione molecules, and increased retinal glutathione peroxidase and reductase. Pycnogenol lowered total and HDL cholesterol, and decreased liver and renal catalase. Overall, the low-carbohydrate diet ameliorated several factors altered by diabetes and did not engender worse effects. The benefits may have resulted from lowered glucose levels or from effects of dietary fatty acids. Addition of pycnogenol vastly improved the health status of diabetic animals in particular. Pycnogenol had mixed effects in the non-diabetic kidney that warrant further investigation.
机译:葡萄糖是大多数人体组织的主要燃料,主要来自摄入的碳水化合物。考虑到糖尿病的主要特征是持续性高血糖症,减少外源性碳水化合物有望缓解绝对血清葡萄糖值和波动。已知葡萄糖水平的长期升高会增加组织中的氧化应激以及其他作用,并导致肾脏,眼睛和心血管系统的晚期和慢性并发症。这项研究的目的是评估单独使用低碳水化合物饮食或添加有效成分抗氧化剂碧萝ogen对人体各器官氧化应激的生物标志物以及1型糖尿病的生理指标的影响。 (链脲佐菌素诱导的)模型。在30天和90天的糖尿病大鼠中,低碳水化合物饮食(27%的蛋白质,5-12%的碳水化合物,62-68%的脂肪)可显着降低血糖,糖化血红蛋白,丙氨酸氨基转移酶和标准化的天冬氨酸氨基转移酶,从而减少损害比标准的大鼠食物(27%的蛋白质,61%的碳水化合物,12%的脂肪)对组织的吸收更高。测试饮食可以最大程度地减少糖尿病患者的多尿,多饮,多食和大便稀疏。它进一步改善了禁食甘油三酸酯和HDL胆固醇,血尿素氮和肌酐。在两项研究中,通过试验饮食改善或归因于糖尿病引起的心脏过氧化氢酶和谷胱甘肽过氧化物酶,肝γ-谷氨酰转肽酶和红细胞丙二醛的改变。碧萝ogen可降低血清碱性磷酸酶,甘油三酸酯,总胆固醇,肝γ-谷氨酰转肽酶,肾谷胱甘肽过氧化物酶和肾谷胱甘肽。它增加了心脏和肾脏的谷胱甘肽与氧化型谷胱甘肽的比例。在非糖尿病患者中,低碳水化合物饮食可提高血清碱性磷酸酶,总胆固醇和高密度脂蛋白胆固醇,并减少饮水量。它减少了肝脏和肾脏的过氧化氢酶。碧萝ogen对血液中的丙二醛和谷胱甘肽分子具有有益的作用,并增加了视网膜上的谷胱甘肽过氧化物酶和还原酶。碧萝ogen可降低总胆固醇和HDL胆固醇,并降低肝脏和肾脏过氧化氢酶。总体而言,低碳水化合物饮食改善了糖尿病所改变的几个因素,并且未产生更坏的影响。益处可能是由于葡萄糖水平降低或饮食脂肪酸的影响。碧萝ogen的添加特别是大大改善了糖尿病动物的健康状况。碧萝ogen对非糖尿病肾有混合作用,值得进一步研究。

著录项

  • 作者

    Kamuren, Zipporah T.;

  • 作者单位

    Indiana University.;

  • 授予单位 Indiana University.;
  • 学科 Health Sciences Pharmacology.; Health Sciences Nutrition.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;预防医学、卫生学;
  • 关键词

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