• 제목/요약/키워드: Glucose Uptake

검색결과 435건 처리시간 0.03초

Dexamethasone enhances glucose uptake by SGLT1 and GLUT1 and boosts ATP generation through the PPP-TCA cycle in bovine neutrophils

  • Wang, Xinbo;Tang, Mingyu;Zhang, Yuming;Li, Yansong;Mao, Jingdong;Deng, Qinghua;Li, Shusen;Jia, Zhenwei;Du, Liyin
    • Journal of Veterinary Science
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    • 제23권5호
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    • pp.76.1-76.14
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    • 2022
  • Background: Clinical dexamethasone (DEX) treatment or stress in bovines results in extensive physiological changes with prominent hyperglycemia and neutrophils dysfunction. Objectives: To elucidate the effects of DEX treatment in vivo on cellular energy status and the underlying mechanism in circulating neutrophils. Methods: We selected eight-month-old male bovines and injected DEX for 3 consecutive days (1 time/d). The levels of glucose, total protein (TP), total cholesterol (TC), and the proinflammatory cytokines interleukin (IL)-1β, IL-6 and tumor necrosis factor (TNF)-α in blood were examined, and we then detected glycogen and adenosine triphosphate (ATP) content, phosphofructosekinase-1 (PFK1) and glucose-6-phosphate dehydrogenase (G6PDH) activity, glucose transporter (GLUT)1, GLUT4, sodium/glucose cotransporter (SGLT)1 and citrate synthase (CS) protein expression and autophagy levels in circulating neutrophils. Results: DEX injection markedly increased blood glucose, TP and TC levels, the Ca2+/P5+ ratio and the neutrophil/lymphocyte ratio and significantly decreased blood IL-1β, IL-6 and TNF-α levels. Particularly in neutrophils, DEX injection inhibited p65-NFκB activation and elevated glycogen and ATP contents and SGLT1, GLUT1 and GR expression while inhibiting PFK1 activity, enhancing G6PDH activity and CS expression and lowering cell autophagy levels. Conclusions: DEX induced neutrophils glucose uptake by enhancing SGLT1 and GLUT1 expression and the transformation of energy metabolism from glycolysis to pentose phosphate pathway (PPP)-tricarboxylic acid (TCA) cycle. This finding gives us a new perspective on deeper understanding of clinical anti-inflammatory effects of DEX on bovine.

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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    • 제46권2호
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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.

Streptozotocin 유도 당뇨병 생쥐 모델에서 지각 추출물의 항당뇨 효과 (Antidiabetic Effect of Aurantii Fructus Immaturus in Streptozotocin-induced Diabetes Model of Mice)

  • 이경재;임지성;김지은;이수경;김현주;송용선
    • 동의생리병리학회지
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    • 제37권1호
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    • pp.1-8
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    • 2023
  • The aim of this study is to evaluate the antidiabetic effect of the water extract of Aurantii fructus immaturus (WAF), in diabetic models using enzyme, cells and mice, and to suggest a putative mechanism explaining its antidiabetic effect. In an enzyme model using the enzyme α-glucosidase, WAF had no significant effect on α-glucosidase, as compared with acarbose, an antidiabetic drug. Nonetheless, WAF was capable of reducing the blood glucose levels during oral sucrose tolerance test and oral glucose tolerance test, implying that there would be other antidiabetic pathways in no relation to inhibition of α-glucosidase. In cell models using RIN-m5f β-cells and L6 myotubes, WAF, at its non-cytotoxic doses, augmented the secretion of insulin in RIN-m5f β-cells stimulated with 5 mM glucose. In addition, it enhanced the cellular uptake of glucose in L6 myotubes stimulated with deprivation of glucose for 12 h. Therefore, it is most likely that WAF may exert its antidiabetic effects, at least in part, by enhancing insulin secretion and glucose uptake. Meanwhile, in diabetic mice induced with peritoneal injection of streptozotocin (STZ), WAF significantly improved fast blood glucose levels, glycosylated hemoglobin levels, body weight loose, blood pressure, and diabetic adverse effects on functions of the kidney and the liver. Taken together, the water extract of Aurantii fructus immaturus may ameliorate diabetes in mice injected with STZ, at least in part, by enhancing insulin secretion and glucose uptake.

단기간의 당섭취 증가가 인슐린 감수성에 미치는 영향 (Effect of Acutely Increased Glucose Uptake on Insulin Sensitivity in Rats)

  • 김용운;마인열;이석강
    • Journal of Yeungnam Medical Science
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    • 제14권1호
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    • pp.53-66
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    • 1997
  • 인슐린 저항성이란 인슐린의 생물학적 효과가 감소하는 상태를 말하며 당뇨병의 중요한 병리기전이다. 인슐린 저항성은 매우 다양한 특성을 가지고 있으며 유전적인 요인이나 후천적인 요인에 의하여 발생한다. 이제까지 가장 잘 알려진 인슐린 저항성의 유발인자로는 고혈당과 고인슐린증이 있다. 장기간의 고혈당이나 고인슐린증은 가장 중요한 인슐린의 작용조직인 골격근에서 인슐린 수용체의 결합능을 감소시키고 당섭취에 필요한 제 4형 당수송체의 발현을 억제하는 것으로 알려져 있다. 그러나 이들 인자는 모두 골격근에서 당섭취를 증가시키는 것으로서 인슐린 저항성은 말초조직이 세포내로의 과도한 영양소 섭취를 방지하기 위하여 작동시키는 조절기전일 가능성을 생각할 수 있다. 본 연구에서는 단기간의 당섭취 증가가 더 이상의 당섭취를 억제할 수 있는지를 평가하고 그 기전을 규명하고자 흰쥐에서 2시간 동안 다양한 조건으로 당섭취를 유도하고 1 시간의 휴식기간을 가진 후 인슐린 예민도를 측정하고 골격근을 분리하여 인슐린 수용체와 제 4 형 당수송체를 분석하여 당섭취량과 인슐린 감수성과의 상관관계를 규명하고 인슐린 수용체 결합능과 제 4형 당수송체량을 비교하였다. 실험군은 hyperinsulinemic glucose clamp 전에 시행한 당섭취의 조건으로써 5개 군으로 구분하였다. 제 I 군은 대조군으로 생리식염수만 주입하여 기초상태의 인슐린 농도와 혈당을 유지하였으며, 제 II 군은 somatostatin과 포도당을 주입하여 정상 인슐린농도와 고혈당을 유지하였으며, 제 III 군은 포도당을 주입하여 고인슐린증과 고혈당을 유지하였고, 제 IV 군은 인슐린(100 mU/kg/min)과 포도당을 주입하여 초고인슐린증(${\sim}4000{\mu}U/ml$)과 정상혈당(~100 mg/dl)으로 유지하였으며, 그리고 제 V 군은 인슐린과 포도당을 주입하여 초고인슐린증과 고혈당(~200 mg/dl)을 유지하였다. 체중, 공복시 혈당 및 인슐린 농도는 각 군 간에 유의한 차이가 없었다. Hyperinsulinemic euglycemic clamp 전에 주입한 포도당의 총량(gm/kg)은 제 II 군이 $1.88{\pm}0.151$, 제 III 군이 $2.69{\pm}0.239$, 제 IV 군이 $3.54{\pm}0.198$, 그리고 제 V 군이 $4.32{\pm}0.621$이었다. Hyperinsulinemic euglycemic clamp의 평형상태 당제거율(mg/kg min)은 제 I 군이 $16.9{\pm}1.74$, 제 II 군이 $13.5{\pm}0.53$, 제 III 군이 $11.2{\pm}0.52$, 제 IV 군이 $13.2{\pm}0.92$, 그리고 제 V 군이 $10.4{\pm}0.41$로 전체 군 간에 유의한 차이가 있었으며(p<0.001) 각 군간의 비교에서 제 II, III, IV, V 군의 값이 제 I 군에 비하여 유의하게 낮았다 (p<0.05). 전체 실험동물에서 포도당 주입량과 당제거율 사이에 역상관관계 (r=-0.701, p<0.001)를 보였다. 인슐린 수용체 결합과 Western blot으로 분석한 제 4형 당수송체량은 각 군 간에 유의한 차이가 없었다. 이상의 결과로 미루어 단기간의 당섭취 증가가 더이상의 당섭취를 억제할 수 있으나 인슐린 수용체 결합과 제 4형 당수송체의 숫적 감소없이 발생하였다.

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Mammary Performance of First Lactation Bali Cows (Bibos banteng) Fed Grass-Legume Based Diets in Relation to the Role of Glucose

  • Sukarini, I.A.M.;Sastradipradja, Djokowoerjo;Nusada, N.;Mahardika, I.G.;Kiranadi, B.
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권5호
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    • pp.615-623
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    • 2001
  • A study of mammary function in relation to glucose metabolism of first lactation Bali cows on grass-legume diets was carried out using 12 primiparous cows (initial BW $263.79{\pm}21.66kg$) for 16 weeks starting immediately post calving. The animals were randomly allocated into 4 dietary treatment groups R1, R2, R3 and R4, receiving from the last 2 months of pregnancy onwards, rations based on a mixture of locally available grass and legume feed ad libitum. On a DM basis R1 contained 70% elephant grass (PP, Penicetum purpureum) plus 30% Gliricidia sepia leaves (GS), R2 was 30% PP plus 25% GS supplemented with 55% Hibiscus tilliacius leaves (HT, defaunating effect), R3 and R4 were 22.5% PP+41.25% GS+11.25% HT+25% concentrate, with R4 supplemented with zinc-diacetate. TDN, CP and zinc contents of the diets were 58.2%, 12.05% and 18.3 mg/kg respectively for R1, 65.05%, 16.9% and 25.6 mg/kg respectively for R2, 66.03%, 16.71% and 29.02 mg/kg respectively for R3 and 66.03%, 16.71% and 60.47 mg/kg respectively for R4. Milk production and body weights were monitored, an energy and protein balance trial conducted, overall glucose kinetics parameters assessed, mammary blood flow (MBF) and metabolite arteriovenous differences (${\Delta}AVs$) measured to get uptake data and mammary performance relationships. Parameters of glucose kinetics at peak lactation or during dry condition were not affected by ration quality. Glucose pool size, space of distribution and flux increased by 61.77, 62.26 and 82.08%, respectively, during lactation compared to the dry period. Mean glucose flux of lactating Bali cows was $5.52mg/min.kgBW^{0.807}$ which resembles the range of values of temperate dairy cows. Calculation showed that glucose requirements for maintenance, milk lactose and fat-glycerol synthesis, and the formation of NADPH reached 461.69 g for a yield of 1 kg/d or equal to 320.62 mg/min, which was less than the average glucose flux of lactating Bali cows of 481.35 mg/min. Mammary blood flow (MBF) values ranged from 56 to 83 l/h for the different treatments and the ratio MBF per kg milk produced improved from av. 1540 l/kg for R1 to av. 967 l/kg for R4 treated cows. Mammary glucose uptake ranged from 6.27 to 12.03 g/h or 120 to 140 g/kg milk. Glucose uptake was mass-wise 2 to 4 times the amount secreted as lactose, which indicated values less than the calculated mammary glucose needs and that little lactose was synthesized. The excess glucose taken-up was used for other metabolic processes. Linear relationships between metabolite ${\Delta}AVs$ and arterial blood plasma concentration [A] showed that in Bali cows triglycerides (TG), phenylalanine (Phe) and tyrosine (Tyr) have high coefficients of determination, i.e. 0.77, 0.81 and 0.69, respectively. For glucose, the relationship is quadratic with an $R^2$ value of 0.49. It was concluded that lactose synthesis was inadequate, which led to a speculation that milk yield could be improved by increased lactose synthesis.

Glucose Transport through N-Acetylgalactosamine Phosphotransferase System in Escherichia coli C Strain

  • Kim, Hyun Ju;Jeong, Haeyoung;Lee, Sang Jun
    • Journal of Microbiology and Biotechnology
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    • 제32권8호
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    • pp.1047-1053
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    • 2022
  • When ptsG, a glucose-specific phosphotransferase system (PTS) component, is deleted in Escherichia coli, growth can be severely poor because of the lack of efficient glucose transport. We discovered a new PTS transport system that could transport glucose through the growth-coupled experimental evolution of ptsG-deficient E. coli C strain under anaerobic conditions. Genome sequencing revealed mutations in agaR, which encodes a repressor of N-acetylgalactosamine (Aga) PTS expression in evolved progeny strains. RT-qPCR analysis showed that the expression of Aga PTS gene increased because of the loss-of-function of agaR. We confirmed the efficient Aga PTS-mediated glucose uptake by genetic complementation and anaerobic fermentation. We discussed the discovery of new glucose transporter in terms of different genetic backgrounds of E. coli strains, and the relationship between the pattern of mixed-acids fermentation and glucose transport rate.

Ceriporia lacerata 균사체 배양물이 3T3-L1 세포에서 인슐린 신호 전달에 미치는 영향 (Effect of Submerged Culture of Ceriporia lacerata Mycelium on Insulin Signaling Pathway in 3T3-L1 Cell)

  • 신은지;김지은;;박용만;윤성균;장병철;이삼빈;김병천
    • 생명과학회지
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    • 제26권3호
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    • pp.325-330
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    • 2016
  • 본 연구에서는 선행 연구에서 항당뇨 효능이 확인된 Ceriporia lacerata 균사체 배양물 건조물(CL01)을 3T3-L1 세포에 인슐린과 병용 혹은 단독 처리하여 CL01이 세포 단계에서 인슐린 신호 전달에 미치는 영향을 분석하였다. 분화된 3T3-L1 세포에서 포도당 흡수 정도를 측정한 결과, 인슐린과 CL01을 병용 처리한 군에서 농도 의존적으로 유의적으로 포도당 흡수 정도가 증가하였고, 인슐린 부재 상태에서 CL01을 처리하였을 때는 포도당 흡수 작용이 거의 일어나지 않았음을 확인하였다. 또한 분화된 세포에서 인슐린 신호 전달 관련 단백질 및 mRNA 발현을 측정한 결과, IRβ, Akt, PI3K, AMPK 단백질의 인산화가 진행되었고, GLUT4 mRNA 발현이 증가하였음을 알 수 있었다. 이들 결과를 통해 CL01이 당 대사 및 인슐린 신호 전달에 관여하는 유관 단백질 및 유전자 발현에 영향을 미치며 이에 따라 세포 내로 포도당 흡수를 증가시키는 것을 확인하였다.

Comparative Studies on the Utilization of Glucose in the Mammary Gland of Crossbred Holstein Cattle Feeding on Different Types of Roughage during Different Stages of Lactation

  • Chaiyabutr, N.;Komolvanich, S.;Preuksagorn, S.;Chanpongsang, S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권3호
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    • pp.334-347
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    • 2000
  • The present experiment was carried out to study the utilization of glucose in the mammary gland of crossbred Holstein cattle during feeding with different types of roughage. Sixteen first lactating crossbred Holstein cattle which comprised eight animals of two breed types, Holstein Friesian${\times}$Red Sindhi ($50{\times}50=50%$ HF) and Holstein Friesian${\times}$Red Sindhi ($87.5{\times}12.5=87.5%$ HF). They were divided into four groups of 4 animals each of the same breed. The utilization of glucose in the mammary gland was determined by measuring rates of glucose uptake and the incorporation of glucose into milk components in both groups of 50% HF and 87.5% HF animals feeding on either hay or urea treated rice straw. In early lactation, there were no significant differences of the total glucose entry rate and glucose carbon recycling among groups of crossbred animals feeding on either hay or urea treated rice straw. During lactation advance, the total glucose turnover rates and recycling of carbon glucose of crossbred HF animals feeding on urea treated rice straw were markedly higher than those of crossbred HF animals feeding on hay as roughage, whereas there were no significant changes for both groups of crossbred animals feeding on hay. The percentages and values of non-mammary glucose utilization showed an increase during lactation advance in the same group of both 50% HF and 87.5% HF animals. The percentage of glucose uptake for utilization in the synthesis of milk lactose by the mammary gland was approximately 62% for both groups of 87.5% HF and by approximately 55% for both groups of 50% HF animals feeding on either hay or urea treated rice straw. Intracellular glucose 6-phosphate metabolized via the pentose phosphate pathway accounted for the NADPH (reducing equivalent) of fatty acid synthesis in the mammary gland being higher in 87.5% HF animals during mid-lactation. A large proportion of metabolism of glucose via the Embden-Meyerhof pathway in the mammary gland was more apparent in both groups of 50% HF animals than those of 87.5 % HF animals during early and mid-lactation while it markedly increased for both groups of 87.5% HF animals during late lactation. It can be concluded that utilization of glucose in the mammary gland occurs in a different manner for 50% HF and 87.5% HF animals feeding on either hay or urea treated rice straw. The glucose utilization for biosynthetic pathways in the mammary gland of 50% HF animals is maintained in a similar pattern throughout the periods of lactation. A poorer lactation persistency in both groups of 87.5% HF animals occurs during lactation advance, which is related to a decrease in the lactose biosynthetic pathway.

잡곡당화음료 제조 최적 조건 탐색 및 항당뇨 활성 평가 (Exploration of optimum conditions for production of saccharogenic mixed grain beverages and assessment of anti-diabetic activity)

  • 이재성;강윤환;김경곤;윤연경;임준구;김태우;김대중;원상연;배무환;최한석;최면
    • Journal of Nutrition and Health
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    • 제47권1호
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    • pp.12-22
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    • 2014
  • 본 연구에서는 Aspergillus oryzae CF1001 균주를 이용하여 잡곡당화음료 개발조건의 최적화와 향기성분을 분석하고 항당뇨 활성을 확인하고자 하였다. 중심합성실험계획법에 의해 당화온도 $50.71^{\circ}C$, 호화시간 45.12분이 최적 당화조건으로 선정되었으며, 당화온도가 호화시간에 비하여 $Brix^{\circ}$ 증가에 더 많은 영향을 미치는 것으로 확인되었다. 잡곡당화음료의 휘발성 향기성분은 33가지 동정성분과 29가지의 미지 성분이 분석되었다. 소장 내 당흡수와 관련된 ${\alpha}$-glucosidase 활성억제능은 농도 의존적으로 증가하는 것으로 나타났다. HepG2 세포의 glucose uptake 활성을 확인한 결과, 인슐린에 관계없이 glucose uptake가 증가하였으며, 관련 단백질인 GLUT-2, -4의 발현 또한 증가하는 것으로 나타났다. 세포 내 당소모대사 관련 효소인 GK와 PDH도 증가하는 것으로 나타났으며, 잉여로 남은 glucose를 지방으로 전환 저장하는 ACL, ACC 유전자도 증가하는 것으로 나타났다. 이를 통해 잡곡당화음료가 glucose uptake와 세포 내 당소모대사 증가를 도우며, 남는 glucose를 지방으로 전환 저장시키는데 도움을 줄 것으로 사료된다.

한약복합처방의 경구투여가 Streptozotocin에 의해 유발된 당뇨병 백서의 혈당과 항산화효소계에 미치는 영향 (Effects of Oral Administration of Herb-combined Remedy of Diabetes Mellitus on Blood Glucose Levels and Anti-oxidative Enzymatic System in Streptozotocin-induced Diabetic Rats)

  • 이은방;조명래;김재홍;류충열
    • Journal of Acupuncture Research
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    • 제25권1호
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    • pp.57-72
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    • 2008
  • Objectives : The Herb-combined Remedy(HCR) for diabetes mellitus is known as an anti-hyperglycaemic agent. But its exact mechanisms are unclear. The present study was carried out to investigate its anti-hyperglycaemic and anti-oxidative effects in STZ-induced diabetic rats. Methods : Experimental diabetes was induced by injection of STZ(80mg/kg) to ratsvia the peritoneum. The experimental animals were divided into 4 groups : normal group, control group(STZ-induced diabetic rats with no treatment), HCR group(STZ-induced diabetic rats with HCR treatment), MF group(STZ-induced diabetic rats with Metformin treatment). The effects of HCR on STZ-induced diabetes was observed by measuring fasting blood glucose, changes of body weight, food uptake, and water uptake glucose levels in the normal state decline rates in blood glucose levels DPPH free-radical scavenging activity superoxide dismutase in RBC lysate catalase activity in RBC lysate and glutathione reductase activity in RBC lysate. Results : Treatment with HCR regulated blood glucose levels. Treatment with HCR also prevented weight loss in STZ-induced diabetic rats. In addition, oral glucose tolerance decreased following treatment with HCR. Direct anti-oxidative effects on DPPH free-radical scavenging were not observed, but treatment with HCR elevated SOD levels in blood cell lysates from STZ-induced diabetic rats. In addition, the HCR-treatment group showed an elevated tendency to glutathione reductase activity. Conclusions : These results demonstrate that HCR has anti-hyperglycaemic and anti-oxidative effects in STZ-induced diabetic rats.

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