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Analysis on the Components in Stem of the Lespedeza bicolor (싸리(Lespedeza bicolor) 줄기의 성분 분석)

  • Lee, Yang-Suk;Joo, Eun-Yong;Kim, Nam-Woo
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.8
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    • pp.1246-1250
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    • 2005
  • This study was carried out to analyze the components of the stem of bush clover, Lespedeza bicolor to obtain basic data on the studies of the physiological function and a possibility of utilizing L. bicolor. General components of L. bicolor were 82.35$\%$ carbohydrate, 13.38$\%$ moisture, 2.80$\%$ crude protein, 0.86$\%$ crude ash and 0.61$\%$ crude fat. The content of reducing sugar was 147.58 mg/100 g. The total amount of free sugar was 52.4 mg/100 g that was composed of 31.0 mg/100 g fructose, 16.7 mg/100 g glucose and 4.7 mg/100 g sucrose. In the results of mineral analysis, the content of Ca was the highest (472.97 mg/100 g) and followed by 206.70mg/100 g of K. The total amount of hydrolyzed amino acid was 148.95 mg/100 g that consist of 31.74 mg/100g of essential amino acid and 117.24 mg/100 g of non-essential amino acid. Total free amino acids were contained 106.39 mg/100 g that was composed of 8.41 mg/100 g essential amino acids and 97.98 mg/100 g the non-essential, and proline (62.92 mg/100 g) was the highest that account for 59.8$\%$ of total free amino acids. Total content of amino acid derivatives was 30.01 mg/100g and that of $\gamma$ -aminoisobutyric acid was the highest as 12.57 mg/100 g among them.

Effects of Dietary Oligosaccharide on the Blood Glucose and Serum Lipid Composition in Streptozotocin-Induced Diabetic Rats (Streptozotocin 유발 당뇨쥐의 혈당 및 혈중 지질조성에 미치는 Oligosaccharide의 영향)

  • 채영미;이순재
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.30 no.4
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    • pp.710-716
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    • 2001
  • This study was conducted to examine the effects of dietary oligosaccharide on the blood glucose and serum lipid composition in streptozotocin (STZ)-induced diabetic rats. Sprague-Dawley male rats weighing 150$\pm$10g were randomly assigned to one normal and four STZ-induced diabetic groups. Diabetic groups were classified to basal diet(DM group) 10% xylooligosaccharide diet(DM-XO group) 10% isomaltooligosaccharide(DM-IMO group) and 10% fructooligosaccharide (DM-FO). Diabetes was experimentally induced by intravenous injection of 50 mg/kg of body weight of STZ in citrate buffer (pH 4.3) after feeding of experimental diets for 4 weeks. The rats were fed with experimental diet for further 4 weeks in diabetic state. The oligosaccharide diets were not effected on the body weight food intakes and food efficiency ratio. The oligosaccharide diets were also not effected on the body weight food intakes and food efficiency ratio. The oligosaccharide diets were also not effected on the weights of liver kidney and small intestine but the weight of cecum was significantly increased on the groups of xylooligosaccharide and isomaltooligosaccharide diet. The levels of oral glucose tolerance test was more effectively improved by DM-XO group. The levels of blood glucose were markedly lower in oligosaccharide supplemented groups than that of DM group. The levels of blood glucose were markedly lower in oligosaccharide supplemented groups than that of DM group. Activities of two intestinal enzymes such as lactase and sucrase in DM-XO and DM-FO groups were lower than that of DM group while activity of maltase was lower only in DM-XO in DM-FO groups than that of DM-group respectively. The levels of serum triglyceride in DM-XO group were lower than that of DM-group respectively. The levels of serum triglyceride in DM-XO groups were lower than that of DM group however was no significant differences among the oligosaccharide groups. These results suggest that dietary oligosaccharide may act as functional food to be capable of improving carbohydrate and lipid metabolism in diabetic rats.

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