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Effect of Dietary Vitamin E on the Microsomal Mixed Function Oxidase System of Liver and Lung in Streptozotocin-induced Diabetic Rats (식이 Vitamin E가 Streptozotocin 유발 당뇨쥐의 간 및 폐조직에서의 Microsomal Mixed Function Oxidase System에 미치는 영향)

  • 박영란;이순재;임영숙;주길재
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.6
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    • pp.969-975
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    • 1996
  • The purpose of this study was to investigate the effect of dietary vitamin E on microsomal mixed function oxidase system of liver and lung in streptozotocin(STZ) induced diabetic rats. Sprague-Dawley male rats weighing 140 $\pm$ 10mg were randomly assigned to one control and three STZ-diabetic groups. Diabetic groups were divided into DM-0E(vitamin E free diet), DM-40E(40mg vitamin E kg/diet) and DM-400E(400mg vitamin E kg/diet) according to the level of vitamin E supplementation. Diabetes was experimentally induced by intravenous administration of 55mg/kg b.w of STZ in citrate buffer(pH 4.3) after 4 week feeding of three experimental diets. Animals were sacrificed at the 6th day of diabetic state. The contents of cytochrome P$_{450}$ in DM-0E, DM-40E and DM-400E groups of liver were increased by 162%, 150% and 56%, respectively, compared with that of control. Also the contents of cytochrome P$_{450}$ in lung were similar to liver. The activities of cytochrome bs in DM-0E and DM-40E groups of the liver were increased by 70% and 53%, respectively, compared with that of control, but not in DM-400E group. The activities of bs in DM-0E, DM-40E and DM-400E groups of lung were signficantly increased. Activity of cytochrome P$_{450}$ reductase in DM-0E, DM-40E of liver and lung were higher than that of control group, but the activity of DM-400E group was not different from that of control. The lipid peroxide values of DM-0E, DM-40E and DM-400E groups were 143%, 95% and 31% higher than those of control. It was concluded that dietary vitamin E had protective effects on lipid peroxidation accompanied with increased mixed function of oxidase activity in diabetic rats.

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Effects of Different Intensity Aerobic and Resistance Exercise on Anti-diabetic and Lipid Profile Improvement in Type 2 Diabetic mice (다른 강도의 유산소성 및 저항성 운동이 제2형 당뇨 마우스의 항당뇨, 지질 개선에 미치는 영향)

  • Yoon, Byung-Kon;Park, Chan-Ho;Woo, Jin-Hee;Shin, Ki-Ok;Roh, Hee-Tae;Kim, Do-Yeon;Kim, Jung-Sook;Ha, Soo-Min
    • Journal of the Korean Applied Science and Technology
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    • v.36 no.4
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    • pp.1108-1118
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    • 2019
  • The purpose of this study was to examine the effects of aerobic and resistance exercise of different intensity on anti-diabetic and lipid profile improvement in type 2 diabetic mice. C57BL/6 mice were divided into six groups (n=8, in each group): normal group (Normal), type 2 diabetes (DM), type 2 diabetes+VO2max 50% aerobic exercise group (DM50A), type 2 diabetes+VO2max 75% aerobic exercise group (DM75A), type 2 diabetes+1RM 50% resistance exercise group (DM50R), and type 2 diabetes+1RM 75% resistance group (DM75R). DM50A and DM75A were subjected to treadmill exercise 40 min/day, 5 days/week, during 8 weeks (DM50A, at the speed of 8 m/min for 1-4 weeks and 8~10 m/min for 5-8 weeks; DM75A, 12 m/min for 1-4 weeks and 12~14 m/min for 5-8weeks). DM50R (1RM50%) and DM75R (1RM75%) were subjected to ladder-climbing exercise with weights secured to their tails, 8 set/day, 5 days/week, during 8 weeks. After 8 weeks of exercise, fasting blood glucose and HOMA-IR was significantly lower in DM group than in DM group. HbA1c showed significantly lower DM50R and DM75R groups than DM group. HDL-C showed the highest level in DM75A group and triglyceride was lowest in DM75R group. The cardiovascular risk index was lowest in the Normal and DM75A groups. Therefore, moderate intensity exercise in T2DM mice showed better improvement in blood glucose and insulin resistance control, and moderate intensity aerobic exercise was effective in reducing the cardiovascular risk index by increasing HDL-C levels.

Mechanisms of Myotonic Dystrophies 1 and 2

  • Lubov, Timchenko
    • The Korean Journal of Physiology and Pharmacology
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    • v.9 no.1
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    • pp.1-8
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    • 2005
  • Myotonic Dystrophies type 1 and 2 (DM1/2) are neuromuscular disorders which belong to a group of genetic diseases caused by unstable CTG triplet repeat (DM1) and CCTG tetranucleotide repeat (DM2) expansions. In DM1, CTG repeats are located within the 3' untranslated region of myotonin protein kinase (DMPK) gene on chromosome 19q. DM2 is caused by expansion of CCTG repeats located in the first intron of a gene coding for zinc finger factor 9 on chromosome 3q. The CTG and CCTG expansions are located in untranslated regions and are expressed as pre-mRNAs in nuclei (DM1 and DM2) and as mRNA in cytoplasm (DM1). Investigations of molecular alterations in DM1 discovered a new molecular mechanism responsible for this disease. Expansion of un-translated CUG repeats in the mutant DMPK mRNA disrupts biological functions of two CUG-binding proteins, CUGBP and MNBL. These proteins regulate translation and splicing of mRNAs coding for proteins which play a key role in skeletal muscle function. Expansion of CUG repeats alters these two stages of RNA metabolism in DM1 by titrating CUGBP1 and MNBL into mutant DMPK mRNA-protein complexes. Mouse models, in which levels of CUGBP1 and MNBL were modulated to mimic DM1, showed several symptoms of DM1 disease including muscular dystrophy, cataracts and myotonia. Mis-regulated levels of CUGBP1 in newborn mice cause a delay of muscle development mimicking muscle symptoms of congenital form of DM1 disease. Since expansion of CCTG repeats in DM2 is also located in untranslated region, it is predicted that DM2 mechanisms might be similar to those observed in DM1. However, differences in clinical phenotypes of DM1 and DM2 suggest some specific features in molecular pathways in both diseases. Recent publications suggest that number of pathways affected by RNA CUG and CCUG repeats could be larger than initially thought. Detailed studies of these pathways will help in developing therapy for patients affected with DM1 and DM2.

Dermatomyositis sine dermatitis, a rare phenotype of idiopathic inflammatory myopathy

  • Park, Jin-Sung;Park, Ji-Young
    • Journal of Yeungnam Medical Science
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    • v.34 no.1
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    • pp.137-139
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    • 2017
  • Dermatomyositis (DM) is characterized by progressive proximal limb weakness and typical skin manifestations. The histological findings that show perifascicular atrophy and deposition of membrane attack complex are pathognomic features of DM. Dermatomyositis is categorized into classical DM and non-classical DM, which includes amyopathic DM and DM sine dermatitis. DM sine dermatitis is seldom described because of its rarity, making the diagnosis more challenging. We report a case of DM sine dermatitis, a rare phenotype of DM.

Effects of Vitamin E on the Oxidative Damage and Glomerular Filteration Rates of Kidney in Streptozotocin-Inducd Diabetic Rats (당뇨쥐 신장조직의 산화적 손상과 사구체 여과율에 미치는 비타민 E의 영향)

  • 곽오계
    • Journal of Nutrition and Health
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    • v.33 no.6
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    • pp.625-631
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    • 2000
  • The purpose of this study was to investigate the effects of vitamin E on the oxidative damage and glomerular filteration rates(GFR) of kidney in streptozotocin(STZ) induced diabetic rats. Sprague-Dawley male rats weihing 100$\pm$10gm were randomly assigned to one normal and three STZ-induced diabetic groups which were subdivided into vitamin E free diet(DM-0E group)40mg vitamin E per kg diet(DM-40E group) and 400mg vitamin E per kg diet (DM-400E group), Vitamin E level of normal group was 40mg per kg diet. diabetes was experimentally induced by intravenous injection of 55mg/kg of body weight of STZ in citrate buffer(pH 4.3) after 4 weeks feeding of experimental diets. Animals were sacrificed at the 6th day of diabetic states. Activities of xanthine oxidase(XOD) in DM-0E DM-40 and DM-400E groups were significantly increased by 133%, 110%, and 74% respectively compared to normal group. The contents of microsomal superoxide radical(O2) in kidney were 106% and 119% higher of DM-0E and DM-40E groups than normal group respectively but that of DM-400E group was similar to normal group. The level of urnary microalbumin in DM-0E group was increased as 5 times much as normal group at the 6th day. Those of DM-40E and DM-400E groups were decreased to 16% and 36% respectively compared to DM-0E group. The content of urinary $\beta$2-microglobulin in DM-0E DM-40E and DM-400E group were increased by 268%, 181% and 163% respectively compared to normal group. GFR in DM-0E and DM-40E were significantly increased but was nor significantly different from DM-400E groups compared to normal group. In conclusion the supplementation of dietary vitamin E reduced peroxidative damage of renal glomerular and renal dysfunction in diabetic rats.

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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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Effects of Green Tea Catechin on Platelet Phospholipase $A_{2}$ Activity and the Liver Antioxidative Defense System in Streptozotocin-induced Diabetic Rats

  • Yang, Jeong-Ah;Rhee, Soon-Jae
    • Preventive Nutrition and Food Science
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    • v.5 no.4
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    • pp.213-218
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    • 2000
  • The purpose of the study was to investigate the effects of dietary green tea catechin and vitamin E on the phospholipse {TEX}$A_{2}${/TEX} activity and th antioxidative defense system in streptozotocin (STZ)-induced diabetic rats. Sprague-Dawley male rats weighing 100$\pm$10 gm were randomly assigned to one normal and five STZ-induced diabetic groups. The diabetic groups were assigned either a catechin-free diet (DM group), 0.5% catechin diet (DM-0.5C group), 1% catechin diet (DM-1C group), vitamin E-free diet (DM-0E group), and 400 mg vitamin E per kg diet (DM-400E group) according to the levels of dietary catechin or vitamin E supplementation. The vitamin E levels of the normal, DM, DM-0.5C, and DM-1C groups were 40 mg per kg diet. Diabetes was experimentally induced by an intravenous injection of streptozotocin after 4 weeks of feeding the five experimental diets. The animals were sacrificed on the 6th day of he diabetic state. The body weight gains were lower in all five diabetic groups after the STZ injection. The platelet phospholipase {TEX}$A_{2}${/TEX}({TEX}$PLA_{2}${/TEX}) activity in the diabetic groups was higher than that in the normal group. However, the enzyme activity in the DM-0.5C, DM-1C, and DM-400E groups was lower than that in the DM and DM-0E groups. The cytochrome {TEX}$P_{450}${/TEX} and cytochrome {TEX}$b_{5}${/TEX} content and NADPH-cytochrome {TEX}$P_{450}${/TEX} reductase activity were about 50~110% higher in the DM and DM-0E groups than in the normal group, yet significantly reduced by either catechin or vitamin E supplementation. The superoxide dismutase (SOD) content in the liver did not differ significantly in any of the groups. However, the glutathione peroxidase (GSHpx) activity was generally lower in the diabetic groups, compared with the normal group, whereas that of the DM-0.5C, DM-1C, and DM-400E groups was significantly higher compared with that of the DM and DM-0E groups. The levels of thiobarbituric acid reactive substances (TBARS) in the liver tissue were 148% and 201% higher in the DM and DM-0E groups, respectively, compared with the normal group, however, these levels were reduced by either catechin or vitamin E supplementation (DM-0.5, DM-1C and DM-400E). Accordingly, the present results indicate that STZ-induced diabetic rats exhibited an imbalance between free radical generation and scavenger systems in the liver which led to the acceleration of lipid peroxidation. However, these abnormalities were reduced and the antioxidative defense system was restored by either dietary catechin or vitamin E supplementation. In conclusion, the effects of dietary catechin or vitamin E in streptozotocin-induced diabetic rats would appear to inhibit lipid peroxidation as an anti-oxidant by regulating the activity of {TEX}$PLA_{2}${/TEX}.

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Effect of Green Tea Catechin on the Microsomal Mixed Function Oxidase System of Kidney and Brain in Streptozotocin-Induced Diabetic Rats (Streptozotocin 유발 당뇨쥐의 신장 및 뇌조직에서의 Microsomal Mixed Function Oxidase System에 미치는 녹차 Catechin의 영향)

  • 이순재;신주영;차복경
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.2
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    • pp.319-325
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    • 1998
  • The purpose of this study was to investigate the effect of green tea catechin on microsomal mixed function oxidase(MFO) system of kidney and brain in streptozotocin(STZ) induced diabetic rats. Sprague-Dawley male rats weighing 140$\pm$10g were randomly assigned to one control and three STZ-diabetic groups. Diabetic groups wer classified to DM-0C(catechin 0%/kg diet), DM-0.5C (catechin 0.5%/kg diet), and DM-1.0C(catechin 1%/kg diet) according to the level of catechin supplementation. Diabetes were experimentally induced by intravenous administration of 55mg/kg body weight of STZ in citrate buffer(pH 4.3) after 4 weeks feeding of three experimental diets. Animals were sacrificed at the sixth day of diabetic state. The contents of cytochrome P450 in kidney were increased by 77, 42, 49% in DM-0C, DM-0.5C and DM-1.0C groups, respectively, than normal group. The contents of cytochrome P450 in brain were increased by 43% in DM-0C group than normal group, but those of DM-0.5C and DM-1.0C groups were similar to that of normal group. The contents of cytochrome b5 in kidney were increased by 78, 38, 49% in DM-0C, DM-0.5C and DM-1.0C groups, respectively, than normal group. Meanwhile, the contents of cytochrome b5 in brain were not significantly different among all groups. The activities of NADPH-cytochrome P450 reductase in kidney of DM-group were increased by 27% than normal group, but those of DM-0.5C and DM-1.0C groups were 13 and 15% lower than that of DM-0C group. The activities in brain were also increased by 31% in DM-0C group, but those of DM-0.5C and DM-1.0C groups were similar to than of normal group. Levels of TBARS (thiobarbituric acid reactive substance) in kidney were increased by 147, 60 and 59% in DM-0C, DM-0.5C, and DM-1.0C groups, respectively, compared with normal group, but those of DM-0.5C and DM-1.0C groups were 36, 35% lower than that of DM-0C group. Meanwhile, the levels of TBARS in brain were not significantly different among four groups. These results indicate that dietary catechins in green tea play a powerful antioxidant role in reducing the lipid peroxidation enhanced by activation of MFO system in STZ-induced diabetes.

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A Simple Guidance Method for the KM , KG , KB , and GM of Small Fishing Vessels (소형 어선의 복원성 요소 KM , KG, KB, GM의 간이유도법)

  • 박중희
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.20 no.2
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    • pp.91-95
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    • 1984
  • This paper describes to analyze regression relation between the ratio mean draft to freeboard and KM/dm, KB/dm and GM/B, respectively with the 43 Korean fishing vessels (7 Danish seiners; 1l Stowers; 14 Poler and liners; 6 Trawlers; 5 Purse seiners) and the 1 Cargo boat in order to obtain the stability factors of the Korean fishing vessels conveniently. The obtained results are as follows; 1. The stability factors by fishing vessels have a tendency to the larger f/dm, the larger KM/dm and KG/dm, and KB/dm and GM/B are constant. 2. It is found out that M and G differ from the kinds of the fishing vessels because KM/dm is the largest in poler and liners and KG/dm in Danish seiner, respectively. 3. It is confirmed that the stability factors of the fishing vessels which the inclining experiment carry out the wholly in the light and the full loaded condition are the same as the inclining experiment uniformly.

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Effects of YK-209 Mulberry Leaves on Antioxidative Defense System of Liver in Streptozotocin-Induced Diabetic Rats (YK-209 뽕잎이 Streptozotocin 유발 당뇨쥐 간조직의 항산화계에 미치는 영향)

  • 유수경;이순재
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.6
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    • pp.1065-1070
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    • 2002
  • The purpose of this study was investigated the effects of YK-209 mulberry leaves on antioxidative defense system of liver in diabetic rats induced with streptozotocin (STZ). Male Sprague-Dawley rats weighing 100$\pm$10 g were randomly assigned to one normal and four STZ-induced diabetic groups; YK-209 mulberry leaves free diet (DM group),0.1% YK-209 mulberry leaves diet (DM-0.1Y group),0.2% YK-209 mulberry leaves diet (DM-0.2Y group) and 0.4% YK-209 mulberry leaves diet (DM-0.4Y group). Diabetes was induced by intravenous Injection of 55 mg/kg body weight of STZ in sodium citrate buffer (pH 4.3) via tail vein after 4 weeks feeding of experimental diets. Rats were sacrificed at the 9th day of diabetic states. Liver weight in all four diabetic groups were higher than normal group, but YK-209 mulberry supplementation groups were lower than DM group. Hepatic superoxide dismutase (SOD) activity was significantly decreased in all diabetic groups, compared with normal group. Hepatic glutathione peroxidase (GSHpx) activity was 7.3% decreased in DM group, compared with normal group, but those of DM-0.1Y and DM-0.2Y groups were maintained the normal level. The hepatic thiobarbituric acid reactive substances was markedly increased by 144% in DM group, compared with normal group, but those of DM-0. 1Y, DM-0.2Y groups were maintained the normal level. The contents of lipofuscin in liver were increased by 100% in DM group compared with normal group, but those of DM-0. 1Y, DM-0.2Y and DM-0.4Y groups were decreased to 42% 43% and 44%, respectively, compared with DM group. The hepatic superoxide radical (0$^2$-) contents in DM group were increased to 81%, compared with normal group, but those of DM-0.1Y and DM-0.4Y groups were similar to those of normal group. The present result indicate that YK-209 mulberry leaves regarded to suppress lipid peroxidation as an free radical scavenger system by the inhibition of oxidative stress.