• Title/Summary/Keyword: dietary fiber

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The Changes in Structural Carbohydrate on Crown Daisy and Butterbur (쑥갓과 머위의 잎과 중기의 구조탄수화물의 변화)

  • 김대진;윤수현;조영수;최미애
    • Journal of Life Science
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    • v.9 no.5
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    • pp.497-503
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    • 1999
  • Change on the structural carbohydrate(several fiberous components) was determined by vegetables(crown daisy and butterbur)-cultivated in Ulsan, Kyungnam, Korea-as its stage of maturity developed. Samples were separated into leaf and stem, which were dried at 7$0^{\circ}C$ for 24hr, and ground to pass a 1mm screen. They were subjected to moisture, crude protein, crude fat and several dietary fiber-DF(dietary fiber, include unavaible components), NDF(neutral detergent fiber), ADF(acid detergent fiber), lignin, hemicellulose, cellulose and protein corrected NDF(c-NDF), IDF(indigestible fiber, include lignin, hemicellulose and cellulose). In general, structural carbohytrate(several dietary fiber) of vegetable was affected by the growth stage. In case of crown daisy and butterbur, dietary fiber in leaf was higher than DF in stem.

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Preparation of Soluble Dietary Fiber from Oak Wood (Quercus Mongolica) and Its Physiological Function in Rat Fed High Cholesterol Diets (참나무 (Quercus Mongolica)로부터 수용성 식이섬유소의 제조 및 기능성 검증)

  • 채영미;임부국;이종윤;김영희;이순재
    • Journal of Nutrition and Health
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    • v.36 no.1
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    • pp.9-17
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    • 2003
  • The preparation method of a soluble dietary fiber from oak wood (Quercus mongolica) and the effect of the soluble dietary fiber on physiological function in rat fed high cholesterol diets was investigated. The best condition for steam explosion method was 25 kgf/㎤ pressure for 6 min. The exploded samples were delignified by the filtration treatment with 1% NaOH for several times, which is the best condition. The enzymatic hydrolysis of Cellusoft cellulase was more effective than Onozuka R-10 cellulase. The manufactured soluble dietary fiber was assayed using gel permeation chromatography (GPC) and it was dissolved in water. Average molecular weight distribution of manufactured soluble dietary fiber was about 348-1,200 and it was assumed the oligomer form fraction. In order to compare the manufactured soluble dietary fiber with commercial soluble dietary fiber (pectin) on the physiological function, Sprague-Dawley male rats weighing 100$\pm$10 g were randomly assigned to one normal diet and five high cholesterol diet containing 1% cholesterol. The high cholesterol diet groups were classified to fiber free diet (FF group), 5% pectin (5P group), 10% pectin (l0P group), 5% manufactured soluble dietary fiber (5M group) and 10% manufactured soluble dietary fiber (10M group). Body weight gains in all soluble dietary fiber groups were lower than FF group. Food intakes were increased in all soluble dietary fiber groups than that of FF group. Food efficiency ratio (FER) was significantly decreased in all soluble dietary fiber groups than that of the FF group, and it was especially was highest in 10% supplemented soluble dietary fiber group. The weight of liver of the soluble dietary fiber supplemented groups were lower than those of the FF group, but weights of cecum and small intestine of all supplemented soluble dietary fiber groups were significantly increased, compared with that of FF group. The weights and water contents in feces were significantly increased by the soluble dietary fiber. The activity of the glutamic oxaloacetic transaminase in soluble dietary fiber groups were significantly decreased than those of FF group. The hepatic glutathione S-transferase activity in all soluble dietary fiber supplemented groups were higher than that of FF group. The physiological effects of the manufactured soluble dietary fiber are the same as the commercial soluble dietary fiber (pectin). The preparation method of the soluble dietary fiber from the oak chips suited to its purpose. (Korean J Nutrition 36(1) : 9~17, 2003)

The Development of the Dietary Fiber Food Frequency Questionnaire and the Dietary Fiber Intake of Middle School Students in the Chungbuk Province (식이섬유용 식품섭취빈도조사지 개발 및 이를 이용한 충북지역 중학생의 식이섬유 섭취 실태)

  • Shin, Na-Shil;Lee, In-Seon;Kim, Hyang-Sook
    • Korean journal of food and cookery science
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    • v.28 no.5
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    • pp.549-557
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    • 2012
  • In this study, the FFQ-50 questionnaire which composed of 50 food items frequently eaten as sources of dietary fiber, was developed and used to estimate the dietary fiber intake of middle school students in the Chungbuk province. According to the survey, the average daily intakes of dietary fiber for the boys and girls were $23.3{\pm}12.3$ g (93.2%) and $20.8{\pm}11.5$ g (104.0%), respectively, showing a significant difference between the gender. The proportions of boys and girls who did not reach to the sufficient dietary fiber intake were 66.2% and 53.9% respectively. The major sources of dietary fiber were grain foods and vegetables, which measured at 77.24%, followed by fruits, seaweeds, tofu and tofu products, potato and starch, and mushrooms. The cooked white rice contributed the highest (17.81%), followed by baechu-kimchi, cooked brown rice, ramyeon (instant noodle), tangerine, sesame leaf jangajji (pickled sesame leaf), topokki (spicy rice cake stir-fry), blanched and seasoned bean sprouts, bread, and radish kimchi. The study showed that the cooked white rice was the major source of dietary fiber in the boys' diet followed by baechu-kimchi, ramyeon, cooked brown rice, tangerine, bread, strawberry, blanched and seasoned bean sprouts, sesame leaf jangajji, radish kimchi. Girls were taking in dietary fiber mostly from boiled white rice followed by baechu-kimchi, boiled brown rice, tangerine, ramyeon, sesame leaf jangajji, topokki, blanched and seasoned bean sprouts, radish kimchi, and boiled barley.

Changes In Dietary Fiber Content of Barley during Pearling and Cooking (도정 및 가열조리중 보리의 식이섬유 함량변화)

  • Lee, Won-Jong
    • Korean Journal of Food Science and Technology
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    • v.24 no.2
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    • pp.180-182
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    • 1992
  • Three hull-less barleys and three covered barleys grown in Korea were pearled to give 0% and 60% yield, respectively. Whole barleys and pearled barleys were analyzed for total, insoluble, soluble dietary fiber and ${\beta}-glucan$ contents. Whole hull-less barleys contained average 17.1% total dietary fiber, and whole covered barleys contained average 23.9% total dietary fiber. Pearled hull-less barleys contained 9,2% total dietary fiber and 4.8% solule dietary fiber. Pearled covered barleys contained 11.9% total dietary fiber and 6.0% soluble dietary fiber. Whole barleys contained $3.2{\sim}3.9%$ (${\beta}-glucan$, and pearled barleys contained $3.5{\sim}5.4%$ (${\beta}-glucan$. Soluble dietary fiber and (${\beta}-glucan$ contents of barley were not affected by cooking, while insoluble dietary fiber content was increased by cooking.

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Effect of Dietary Fiber on Mineral Bioavailability (식이섬유가 무기질의 생체이용에 미치는 영향)

  • Choe, Myeon
    • Journal of Food Hygiene and Safety
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    • v.7 no.4
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    • pp.165-172
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    • 1992
  • Among the nutrients of biological importance, minerals are of particular interest in human nutrition because the range of adequate intake is so narrow. As the results of a series of interaction experiments between dietary fiber sources and minerals, there are many inconsistencies in the experimental data regarding the effect of dietary fibers on mineral bioavailability. the mechanism by which dietary fiber might influence mineral absorption is related to its physicochemical properties. These properties involve the ability of dietary fiber to (1) act as a weak cation exchanger, (2) decrease transit time, (3) dilute mineral concentration by increasing fecal bulk and (4) resist digestion in the large bowel. Regardless of the large number of human and animal studies available, a carful review of these publications dose not provide the answer as to whether the adverse effect of dietary fibers on mineral absorption is the fiber itself or some associated dietary factors( e.g. phytate, oxalate, ascorbate, citrate and protein, mineral-mineral interaction, etc) that are responsible for this action. As a result of the complexity of interaction that may take place between minerals. dietary fiber, and other component of food ; it becomes very difficult to blame fiber alone as a negative factor of mineral nutrition. We absolutely need more research with advanced tools rather than metabolic balance study.

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Composition, Water-Holding Capacity and Effect on Starch Retrogradation of Rice Bran Dietary Fiber (미강 식이섬유의 조성과 보수력 및 전분노화에 미치는 영향)

  • Lee, Young-Heon;Moon, Tae-Wha
    • Korean Journal of Food Science and Technology
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    • v.26 no.3
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    • pp.288-294
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    • 1994
  • Dietary fiber contents in brans of the two representative Korean rice varieties, Chucheong and Sucheon were measured by the AOAC method, and the composition of total dietary fiber (TDF) was analyzed with the acid detergent fiber (ADF) procedure. Rice bran contained more than 25% of TDF, most of which was insoluble dietary fiber. Hemicellulose was shown to be the major constituent and rice bran dietary fiber contained distinctive amounts of cellulose and uronic acid. Consecutive acidalkaline treatment of rice bran considerably increased soluble dietary fiber (SDF) content and water-holding capacity (WHC). WHC of wheat flour-rice bran dietary fiber mixture increased with the proportion of rice bran dietary fiber. Analysis of the differential scanning calorimetry thermograms revealed that rice bran dietary fiber effectively retarded retrogradation of wheat starch.

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Dietary Behavior and Dietary Fiber Intake of High School Girls in Chungbuk Area (충북지역 여고생의 식사행동과 식이섬유 섭취실태)

  • Kang, Yu-Ju;Kim, Hyang-Sook
    • Korean journal of food and cookery science
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    • v.24 no.1
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    • pp.121-131
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    • 2008
  • This study was performed to examine the food behavior and dietary fiber intakes of high school girls using questionnaires and 24-hr recall method. Collected sample were 263 girls from 4 different high schools. The dietary intakes were analyzed by the DS24 WIN program. The average height and weight of the respondents were $161.0{\pm}5.0$ cm and $51.8{\pm}6.3$ kg. The average BMI was $20.2{\pm}2.2$ which was within the normal range. The breakfast skipping rate was 39.2% and the reason of breakfast skipping were lack of time(50.0%), irregular meal time due to eating between meals(17.0%) and poor appetite(13.7%). The average daily energy intake of the respondents was 1741kcal. Beside protein, phosphorus, iron, niacin, vitamin A, and B1, all other nutrients intake level were below the recommended intake(RI). Average calcium and folate intakes were below the EAR as of $59.5{\sim}89.7%$ and $63{\sim}83%$ respectively. The average dietary fiber intake of the subjects was $15.6{\pm}5.2$ g, between 3.4g-35.2 g, and the respondents coumed $9.2{\pm}2.6$ g/kcal of dietary fiber. The main sources of dietary fiber were rice and kimchi which supplied 14.75% and 13.66% of total dietary fiber respectively. Also the major food groups supplying dietary fiber were vegetables and cereals, 36.90% and 31.06% of total dietary fiber respectively.

Effect of dietary protein and fiber on the lead and protein metabolism in lead poisoning rats (식이 단백질 및 섬유질이 납중독 흰쥐의 단백질과 납대사에 미치는 영향)

  • 김지희
    • Journal of the Korean Home Economics Association
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    • v.29 no.3
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    • pp.47-59
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    • 1991
  • This study wa performed to investigate the effects of dietary protein and fiber on the lead and protein metabolism in lead poisoning rats. Seventy male rats of Sprague-Dawley strain weighing 172$\pm$2g were blocked into 14 gropus according to body weight. Protein(casein) was given at levels of 15 or 40%, and fibers(pectin, cellulose and CMC) were given at levels of 0, 4 or 10%. The results are summarized as follows: 1. Food intake, weight gain and food efficiency ratio(FER) in groups fed high protein diets were higher than those in low protein groups. Liver weight in groups fed no dietary fiber was higher than that of animals fed fiber. Kidney and femur weights were greater in high protein groups. Tibia and femur lengths, and tibia weight were not significantly different among groups. 2. Hemoglobin content and hematocrit values showed no significant differance with dietary factors. 3. Total protein contents of serum and liver showed no significant difference, but tended to increase with increasing dietary protein level. Both daily urinary and fecal nitrogen excretions in high protein groups were higher than those in low protein groups. Especially daily fecal nitrogen excretions in high dietary fiber groups were significantly high. Body nitrogen absorption rate was the highest in animals fed no fiber. 4. Pb levels in blood, liver, kidney and bone tended to decrease with high dietary protein and fiber levels. Especially Pb level of kidney was high in all groups. Daily urinary Pb excretion showed no significant difference with dietary factors, but fecal Pb excretion increased significantly in high protein and fiber groups.

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Effect of Dietary Fiber Level on Meat Quality in Colored Broiler (식이섬유 수준이 유색육용계의 육질에 미치는 영향)

  • Kim, Mi-Suk;Moon, Yoon-Hee;Lim, Sabina;Kim, Dae-Jin
    • Journal of Life Science
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    • v.7 no.4
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    • pp.329-335
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    • 1997
  • This study was conducted to investigate the effect of dietary fiber(DF) levels on the meat quality in colored broiler. Colored broiler were fed on containing corn-soy basal diet(DF 5%) and high level(DF 6,7 and 8%) of dietary fiber diets for 7 weeks. Dietary fiber level of diet was make up by adding some alffalfa meal. Colored broiler meats were stored at 3$\circ$ for 24hr after skaughter, and used to analyze physico-chemical properties. Proximate component, pH, shear force value, myofibril fragmentation index, water holding capacity, cooking loss, protein extractability, fatty acid composition, Hunter's L, a value and palatability of cooked meat were not significantly affected by dietary fiber levels, whereas the Hunter's value of meat was significantly affected bty dietary fiber levels for the final period of feeding. Crude protein content, myofibril fragmentation index, water holding capacity, protein extractability and Hunter's b value of breast meat's were higher than thigh meat's, but crude fat content, pH, shear force value, cooking loss, palmitoleic acid, linolenic acid, and Hunter's a value were lower, regardless of dietary fiber level.

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Functionality and Application of Dietary Fiber in Meat Products

  • Kim, Hyun Jung;Paik, Hyun-Dong
    • Food Science of Animal Resources
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    • v.32 no.6
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    • pp.695-705
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    • 2012
  • Dietary fiber naturally present in various sources of cereals, legumes, fruits and vegetables plays a physiological role in human health, such as lowering cholesterol and blood pressure, improving blood glucose control in diabetes, helping with weight loss and management, and reducing cancer risk. In addition, dietary fibers have has been added as a functional food ingredient to food products to provide water-holding capacity, viscosity, gel-forming ability, and fat-binding capacity to food products. These beneficial characteristics of dietary fiber components can improve the image of meat products to be healthy and functional food products. This article reviews the concept and current definition of dietary fibers in food products along with their health benefits and functional characteristics. Dietary fibers from different sources like cereals, legumes, fruits, and vegetables and soluble dietary fibers have been applied as functional ingredients to various types of meat products, such as beef patties, ground beef and pork, pork and chicken sausages, meatballs, and jerky etc. Based on the application of dietary fibers to different types of meat products, possible future characteristics in selecting appropriate dietary fiber ingredients and their proper incorporation are explored to develop and produce healthy and functional meat products with high dietary fiber contents.