• Title/Summary/Keyword: Glucose Metabolism

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Antidiabetic and Lipid Metabolism Effect of Paediomyces Japonica in Streptozotocin-Induced Diabetic Rats (눈꽃동충하초(paecilomyces japonica)추출물의 지질대사 및 당대사에 미치는 영향)

  • Kim, Ok-Kyung
    • Journal of the Korean Applied Science and Technology
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    • v.27 no.4
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    • pp.494-500
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    • 2010
  • This study was carried to investigate the antidiabetic and lipid metabolism of water extract paecilomyces japonica(PJ) in Streptozotocin (STZ) induced diabetic rats. Diabetes were induced by intravenous injection of STZ at a dose of 42mg/kg dissolved in citrate buffer. The water extract of paecilomyces japonica were orally administrated once a day for 7 days at a dose of 500mg/kg or 1,000mg/kg. The contents of serum glucose, triglyceride(TG), total cholesterol were significantly decreased in PJ treated group compared to the those of STZ-control group. The content of hepatic glycogen and activities of glucose-6-phosphate dehydrogenase(G-6-PDH), glucokinase(GK) were significantly increased, but activity of glucose-6-phoshatase(G-6-Pase) was significantly decreased in PJ treated group compared to the those of STZ-control group. These results indicated that water extract of paecilomyces japonica would have antidiabetic and lipid metabolism effect in STZ-induced diabetic rats.

Effects of Chicory Extract on the Serum Glucose and Lipid Metabolism in Strptozoticin-induced Diabetic Rats (치커리추출액이 Streptozotocin 유발 당뇨쥐의 혈당과 지질대사에 미치는 영향)

  • 이정선
    • Journal of Nutrition and Health
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    • v.30 no.7
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    • pp.781-788
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    • 1997
  • This present study was undertaken to evaluate the effects of 5 % chicory extract on serum glucose and lipid metabolism in diabetic rats treated with streptozotocin (STZ). The experimental subjects were divided into 4 groups. : No-fiber , cellulose, insulin, and chicorygroup. The animals were fed ad libitum each of the experimental diets for 4 weeks. The food intake and food efficiency ratio in chicory group was significantly higher than in no-fiber, cellulose, and inulin groups. The reduction of body weight was also significantly lower. The wet weights of cecum and cecal contents were significantly increased in rat fed chicory extract. Total glycated hemoglobin was significantly decreased by chicory extract feeding whereas serum total cholesterol . LDL-choelsterol, and HDL-choelsterol levels were significantly increased. But there were no differences between HDL-choesterol/total cholesterol ratios, LDL-cholesterol/HDL-cholesterol ratios, and atherogenic index. After 10 -hour fast, the levels of hepatic triglyceride and phospholipid were significantly higher in the chicory group than any in other groups. These results indicated that chicory extract is an effective therapeutic regimen for control of metabolic deragements in diabetics.

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Measurement of the Metabolism of Energy Substrates in Single IVF-derived Bovine Embryos (소 체외수정란에 있어서 Non-invasive 방법에 의한 기질 대사량의 측정)

  • ;;S. Sugawara
    • Korean Journal of Animal Reproduction
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    • v.19 no.3
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    • pp.161-169
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    • 1995
  • To investigate the metabolism of various substrates in preimplantation bovine embryos, uptake of glucose and pyruvate, and lactate production were measured in single IVF-derived bovine embryos by a non-invasive method. When the embryos were incubated for 5 h in culture medium supplemented with 1 mM glucose and 0.4mM pyruvate as substrates at each developmental stage, glucose uptake was increased with more advanced developmental stages while pyruvate uptake was decreased. Total lactate producton of 2-cell embryos was significantly higher than that of blastocysts (p<0.05). Both of glucose uptake and lactate production in normal morulae produced in vitro was significantly high compared to the degenerated embryos(p<0.05). The results obtained in the study suggest that pyruvate as an exogenous substrate may be support in bovine embryos until 8-cell stage, whereas glucose may be effective as an energy source after morula stage. In addition, it was proven thatlactate was not effective as an energy source in preimplantation development of IVF-derived bovine embryos.

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Sleep-Disordered Breathing and Metabolic Dysfunction (수면호흡장애와 대사적 기능장애)

  • Joo, Soon-Jae;Shin, Chol
    • Sleep Medicine and Psychophysiology
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    • v.12 no.1
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    • pp.17-22
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    • 2005
  • Sleep-disordered breathing (SDB) is associated with increased cardiovascular and cerebrovascular morbidity. Epidemiological and clinic-based studies have shown that SDB is related to impaired glucose tolerance and increased insulin resistance, independent of obesity. Despite of a consistent association between SDB and impaired glucose-insulin metabolism, the mechanism underlying this relationship has not been fully elucidated. It is recognized that hypoxemia and hypercapnia that occur in SDB provoke sympathetic nervous activity and catecholamine, epinephrine and norepinephrine, and cortisol are released. Sympathetic hyperactivity and increased catecholamines can impair glucose homeostasis by increasing glycogenolysis and gluconeogenesis, which can result in increased circulating insulin levels and increased risk of insulin resistance. A prospective study is needed to investigate the causal relationship between SDB and impaired glucose-insulin metabolism in a healthy population without diabetes, hypertension and obesity as etiologic risk factors.

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From the Photosynthesis to Hormone Biosynthesis in Plants

  • Hyong Woo Choi
    • The Plant Pathology Journal
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    • v.40 no.2
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    • pp.99-105
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    • 2024
  • Land plants produce glucose (C6H12O2) through photosynthesis by utilizing carbon dioxide (CO2), water (H2O), and light energy. Glucose can be stored in various polysaccharide forms for later use (e.g., sucrose in fruit, amylose in plastids), used to create cellulose, the primary structural component of cell walls, and immediately metabolized to generate cellular energy, adenosine triphosphate, through a series of respiratory pathways including glycolysis, the tricarboxylic acid cycle, and oxidative phosphorylation. Additionally, plants must metabolize glucose into amino acids, nucleotides, and various plant hormones, which are crucial for regulating many aspects of plant physiology. This review will summarize the biosynthesis of different plant hormones, such as auxin, salicylic acid, gibberellins, cytokinins, ethylene, and abscisic acid, in relation to glucose metabolism.

Glucose Effects on Cell Growth, Antibody Production, and Cell Metabolism of Hybridoma Cells (Hybridoma 세포의 세포성장, 항체생산 및 세포대사에 미치는 Glucose의 영향)

  • ;Shaw S.Wang
    • KSBB Journal
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    • v.10 no.3
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    • pp.323-334
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    • 1995
  • The effects of glucose on cell growth kinetics, monoclonal antibody productivity, and cell metabolism or hybridoma cells were investigated. The mouse-mouse hybridoma cell line VIII H-8 producing mouse IgG2a was used as a modal system. Glucose showed substrate inhibition type dependence on specific growth raie. The maximum cell density increased as initial glucose concentration increased up to 4 g/$\ell$. Glucose showed a strong influence on cell death kinetics, and an inverse relationship between specific death rate and glucose concentration was found. Cell viability and monoclonal antibody production increased as initial glucose concentration increased. The specific glucose consumption rate increased with glucose concentration, and cumulative specific lactate production rate increased with increasing initial glucose concentration. The overall kinetics of ammonium ion production was almost invariant with respect to initial glucose concentration, while the cumulative specific ammonium ion production rate was dependent on initial glucose concentration.

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Ginsenoside Rg3 ameliorates myocardial glucose metabolism and insulin resistance via activating the AMPK signaling pathway

  • Ni, Jingyu;Liu, Zhihao;Jiang, Miaomiao;Li, Lan;Deng, Jie;Wang, Xiaodan;Su, Jing;Zhu, Yan;He, Feng;Mao, Jingyuan;Gao, Xiumei;Fan, Guanwei
    • Journal of Ginseng Research
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    • v.46 no.2
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    • pp.235-247
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    • 2022
  • Background: Ginsenoside Rg3 is one of the main active ingredients in ginseng. Here, we aimed to confirm its protective effect on the heart function in transverse aortic coarctation (TAC)-induced heart failure mice and explore the potential molecular mechanisms involved. Methods: The effects of ginsenoside Rg3 on heart and mitochondrial function were investigated by treating TAC-induced heart failure in mice. The mechanism of ginsenoside Rg3 for improving heart and mitochondrial function in mice with heart failure was predicted through integrative analysis of the proteome and plasma metabolome. Glucose uptake and myocardial insulin sensitivity were evaluated using micro-positron emission tomography. The effect of ginsenoside Rg3 on myocardial insulin sensitivity was clarified by combining in vivo animal experiments and in vitro cell experiments. Results: Treatment of TAC-induced mouse models with ginsenoside Rg3 significantly improved heart function and protected mitochondrial structure and function. Fusion of metabolomics, proteomics, and targeted metabolomics data showed that Rg3 regulated the glycolysis process, and Rg3 not only regulated glucose uptake but also improve myocardial insulin resistance. The molecular mechanism of ginsenoside Rg3 regulation of glucose metabolism was determined by exploring the interaction pathways of AMPK, insulin resistance, and glucose metabolism. The effect of ginsenoside Rg3 on the promotion of glucose uptake in IR-H9c2 cells by AMPK activation was dependent on the insulin signaling pathway. Conclusions: Ginsenoside Rg3 modulates glucose metabolism and significantly ameliorates insulin resistance through activation of the AMPK pathway.

Mechanisms of Glucose Uptake in Cancer Tissue (악성종양의 포도당 섭취 기전)

  • Chung, June-Key
    • The Korean Journal of Nuclear Medicine
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    • v.33 no.1
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    • pp.1-10
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    • 1999
  • Cancer cells are known to show increased rates of glycolysis metabolism. Based on this, PET studies using F-18-fluorodeoxyglucose have been used for the detection of primary and metastatic tumors. To account for this increased glucose uptake, a variety of mechanisms has been proposed. Glucose influx across the cell membrane is mediated by a family of structurally related proteins known as glucose transporters (Gluts). Among 6 isoforms of Gluts, Glut-1 and/or Glut-3 have been reported to show increased expression in various tumors. Increased level of Glut mRNA transcription is supposed to be the basic mechanism of Glut overexpression at the protein level. Some oncogens such as src or ras intensely stimulate Glut-1 by means of increased Glut-1 mRNA levels. Hexokinase activity is another important factor in glucose uptake in cancer cells. Especially hexokinase type II is considered to be involved in glycolysis of cancer cells. Much of the hexokinase of tumor cells is bound to outer membrane of mitochondria by the porin, a hexokinase receptor. Through this interaction, hexokinase may gain preferred access to ATP synthesized via oxidative phosphorylation in the inner mitochondria compartment. Other biologic factors such as tumor blood flow, blood volume, hypoxia, and infiltrating cells in tumor tissue are involved. Relative hypoxia may activate the anaerobic glycotytic pathway. Surrounding macrophages and newly formed granulation tissue in tumor showed greater glucose uptake than did viable cancer cells. To expand the application of FDG PET in oncology, it is important for nuclear medicine physicians to understand the related mechanisms of glucose uptake in cancer tissue.

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Effects of Haw (Crataegus pinnatifida BUNGE) on Relaxation in the Lipid Components and Blood Glucose of Lipid Metabolism Syndrome (산사(Crataegus pinnatifida BUNGE)가 지질대사 증후군의 지질성분 및 혈당 완화에 미치는 영향)

  • Kim, Han-Soo;Kim, Min-A;Duan, Yishan;Jang, Seong-Ho;Lee, Won-Ki;Ryu, Jae-Young
    • Journal of Environmental Science International
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    • v.23 no.6
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    • pp.1021-1027
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    • 2014
  • This study was designed in order to determine the influences of haw (Crataegus pinnatifida $B_{UNGE}$) on the lipid metabolism syndrome. Sprague Dawley rats, 7 weeks old, were given four different types of diets for 5 weeks: ND group (noncholesterolemic diet), HE group (non cholesterolemic diet+haw extract), CD group (cholesterolemic diet), CH group (cholesterolemic diet+haw extract). Concentrations of LDL-cholesterol, triglyceride, phospholipid, free cholesterol, cholesteryl ester, blood glucose were remarkably higher in the CD group than the other groups. But by treatment of haw extract group with cholesterolemic diet (CH group) were significantly decreased compared with CD group. Cholesteryl ester ratio was no difference between CD group and CH group. These results indicate that Crataegus pinnatifida $B_{UNGE}$ would be effective in lipid metabolism syndrome.