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复合膳食纤维对大鼠体内脂质过氧化作用的影响
引用本文:宋扬,杨宗军. 复合膳食纤维对大鼠体内脂质过氧化作用的影响[J]. 卫生研究, 2003, 32(5): 451-454
作者姓名:宋扬  杨宗军
作者单位:1. 青岛大学医学院营养研究所,青岛,266021
2. 青岛市儿童妇幼保健中心
基金项目:青岛市自然科学基金资助项目 (No .0 3 - 2 -jz- 1 5)
摘    要:制备复合膳食纤维 (dietaryfiber,DF) ,并分别探讨复合、混合及三种单一的DF对高脂血症大鼠体内脂质过氧化作用的影响。选健康、断乳Wistar大鼠 6 4只 ,按体重随机分为 8组 ,用高脂饲料诱发高脂血症的同时 ,分别添加 10 %的DF :纤维素 (B组 )、果胶 (C组 )、海藻酸钠 (D组 )、纤维素 -果胶复合物 (E组 )、纤维素 -海藻酸钠复合物 (F组 )、纤维素 -果胶混合物 (G组 )、纤维素 -海藻酸钠混合物 (H组 ) ,以单纯的高脂饲料组为对照组 (A组 ) ,观察各种DF对大鼠的生长发育及脂质过氧化作用的影响。结果显示 :1、添加 10 %的各种DF不影响大鼠的生长发育。 2、各种DF皆可显著升高血清超氧化物歧化酶 (SOD) (P <0 0 1)、谷胱甘肽过氧化物酶 (GSH Px)活性 (P <0 0 1) ,降低丙二醛 (MDA)水平 (P <0 0 5 ,B、D组除外 ) ,提高红细胞膜的流动性 (P <0 0 5 ) ,以复合物、混合物效果为明显。 3、各种DF可不同程度地增加粪重和粪脂排出量 (P <0 0 5 ,D组除外 ) ,以复合物、混合物为明显。提示各种DF皆可不同程度地降低大鼠体内脂质过氧化作用 ,提高红细胞膜的流动性 ,其中可溶性DF效果优于不可溶性DF ,而复合、混合DF的效果又优于单一的DF ,且以复合物效果为佳

关 键 词:膳食纤维  制备  纤维素  果胶  海藻酸钠  脂质过氧化
文章编号:1000-8020(2003)05-0451-04
修稿时间:2002-10-04

Preparation of fiber complexes and its role in lipid peroxidation
Song Yang,Yang Zongjun. Preparation of fiber complexes and its role in lipid peroxidation[J]. Journal of hygiene research, 2003, 32(5): 451-454
Authors:Song Yang  Yang Zongjun
Affiliation:Department of Nutrition, Medical College of Qingdao University, Qingdao 266021, China.
Abstract:This study was designed to prepare the artificial fiber complexes and examine its role in lipid peroxidation in comparison with other fibers. Sixty-four healthy, female Wistar rats (50-80 g) were randomly divided into eight groups based on body weight. All seven kinds of DF (cellulose--group B, pectin--group C, sodium alginate--group D, cellulose-pectin complex--group E, cellulose-sodium alginate complex--group F, cellulose-pectin mixture--group G, cellulose-sodium alginate mixture--group H) were given at a level of 10% in the diet fed on a lipid-rich diet. The control group (group A) was fed on a lipid-rich diet alone without DF. After eight weeks, the effect on growth and development, lipid metabolism and lipid peroxidation in rats were studied. The results showed that: 1. Seven kinds of DF did not affect the growth and development of the experimental rats. 2. Seven kinds of DF all can increase serum superoxide dismutase (SOD) and glutathione peroxidase (GsH-Px) activities and reduce malondiadehyde (MDA) content (except group B and D). Erythrocyte membrane fluidity was significantly increased in DF groups, and fiber complex groups were most effective. 3. The fecal weight and fat contents in all DF groups were significantly higher than that in control group, especially for fiber mixture and complex groups. It is concluded that all these kinds of DF have the effect of reducing lipid peroxidation to some extent in rats, and fiber complexes might be the most effective.
Keywords:dietary fiber   preparation   cellulose   pectin   sodium alginate   lipid peroxidation
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