• Title/Summary/Keyword: hyperglycemic effect

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Hyperglycemic Effect of Conformationally Rigid Sulfonylurea Derivatives (Conformation이 고정된 Sulfonylurea 유도체의 혈당상승작용)

  • 박혜영;김연경;권진숙;김화정
    • Biomolecules & Therapeutics
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    • v.4 no.4
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    • pp.408-410
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    • 1996
  • 3, 4-Dihydro-3-oxo-2H-1, 2, 4-benzothiadiazine-1, 1-dioxides were synthesized as conformationally rigid analogues of sulfonylurea hypoglycemic agents. All the compounds prepared showed hyperglycemic activity. The hyperglycemic activity was enhanced for the diabetic rats in which the blood glucose level was increased by 30-70%.

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Picrotoxin-induced Hyperglycemia and the Influences of Several Drugs on the Hyperglycemia (Picrotoxin의 과혈당작용(過血糖作用)과 그에 대(對)한 몇 약물(藥物)의 영향(影響))

  • Chun, Boe-Gwun
    • The Korean Journal of Pharmacology
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    • v.14 no.1_2
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    • pp.55-62
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    • 1978
  • Ban formulated the concept of 'sympathetic center' and 'parasympathetic center' in the central nervous system, and Folkow et al. reported that the electric stimulation of the posterior part of hypothalamus induced the marked liberation of catecholamines from the adrenal medulla. Tatum reported that the hyperglycemic action of picrotoxin is contributed to the cathecholamines liberation from adrenal medulla by the excitation of hypothalamus via splanchnic nervous plexus. In this paper, the relationship between the convulsive action and the hyperglycemic effect of picrotoxin was investigated, with references to the influences of several drugs related with adrenergic function and two intravenous anesthetics on the picrotoxin hyperglycemia. The results obtained were summarized as follows; 1) There was no difference between the convulsive dose(1. 5mg/kg) and the subconvulsive dose (0.75mg/kg) of picrotoxin in its hyperglycemic effect that was not affected with the phenobarbital pretreatment, but the efficacy of its hyperglycemic action was more prominent than that of strychnine. 2) The hyperglycemic effect of picrotoxin was markedly suppressed by the pretreatment of thiopental or ketamine. 3) The hyperglycemic effect was not affected by the reserpine pretreatment, but the effect was markedly suppressed by the pretreatment of iproniazid or chlorpromazine. 4) The hyperglycemic effect of picrotoxin was significantly suppressed by the pretreatment of hexamethonium, propranolol or guanethidine, and the order of those suppressing efficacy was propranolol> hexamethonium> guanethidine.

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The Effect of Chonhwasan and Okchunsan in Streptozotocin induced Hyperglycemic Rats (천화산(天花散)과 옥천산(玉泉散)이 고혈당(高血糖) 백서(白鼠)에 미치는 영향(影響))

  • Kim Gweon-Cheol;Park Ji-Hyeon;Kang Seog-Bong
    • Journal of Society of Preventive Korean Medicine
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    • v.4 no.1
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    • pp.132-143
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    • 2000
  • This present study was carried out to investigate the effect of Chonhwasan and Okchunsan in streptozotocin induced hyperglycemic rats. Body weight, serum levels of glucose, insulin, total cholesterol triglyceride and urine levels of volume, glucose, protein were measured in streptozotocin induced hyperglycemic rats orally receiving extracts of Chonhwasan and Okchunsan plus Radix Trichosandis for 4 days. According to the result, Chonhwasan and Okchunsan have the effect of decreased body weight delate and decreased blood sugar, serum lipid metabolism and urine volume, glucose, protein in streptozotocine induced hyperglycemic rats, and they were expected to be applied to the treatment of Diabetes Mellitus.

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The Effects of Saengjingamrotang and Saengjingamrotang plus Radix Trichosanthis in Streptozotocin induced Hyperglycemic Rats (생진감로탕(生津甘露湯)과 생진감로탕가천화분(生津甘露湯加天花粉)이 고혈당(高血糖) 백서(白鼠)에 미치는 영향(影響))

  • Baek Jung-Han;Kang Seok-Bong
    • Journal of Society of Preventive Korean Medicine
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    • v.3 no.1
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    • pp.83-100
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    • 1999
  • This present study was carried out to investigate the effect of Saengjingamrotang and Saengjingamrotang plus Radix Trichosanthis in streptozotocin induced hyperglycemic rats. Body weight, serum levels of glucose insulin total cholesterol triglyceride and urine levels of volume glucose protein were measured in streptozotocin induced hyperglycemic rats orally receiving extracts of Saengjingamrotang and Saengjingamrotang plus Radix Trichosanthis for 4 days. According to above mentioned results, Saengjingamrotang and Saengjingamrotang plus Radix Trichosanthis have the effect of decreased blood sugar, serum lipid levels and urine volume, protein, glucose in streptozotocin induced hyperglycemic rats, and so they were expected to be appled to the treatment of diabetes mellitus.

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Effect of Alpha-2 Adrenergic Agonist on Beta Adrenoceptor-Nediated Control of Blood Glucose in the Fasted Mouse

  • Han, Guie-In;Kim, Mie-Young
    • Archives of Pharmacal Research
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    • v.9 no.4
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    • pp.219-222
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    • 1986
  • Dose-dependent increasesin blood glucose were produced by epinephrine and clonidine in fasted male mice. Isoproterenol was ineffective in increasing blood glucose at lower doses ($10^{-8}M$/kg-$10^{-7}M$/kg); with higher dose ($10^{-6}M$/kg) the glucose level was increased. The hyperglycemia induced by epinephrine was inhibited by yobimbine, prazosin and propranolol, indicating that the hyperglycemic effect of epinephrine is mediated by alpha-1, alpha-2 and beta adrenoceptor. When clonidine (10$^{-6}$ M/kg) was administered simultaneously with sioproterenol ($10^{-6}M$/kg), an enhenced hyperglycemic effect was observed. The increment produced by clonidine plus isoproterenol was higher than that by clonidine alone. These increment produced by clonidine plus isoproterenol was higher than that by clonidine alone. These results suggest that stimulation of alpha-2 adrenoceptor may be reponsible for the exertion of the hyperglycemic effect by beta agonists in fasted mice.

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Effect of Azadirachta indica flower extract on basal and experimentally elevated blood glucose in rats

  • Waliullah, S;Javed, Kalim;Jafri, MA;Singh, S
    • Advances in Traditional Medicine
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    • v.8 no.3
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    • pp.302-310
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    • 2008
  • Azadirachta indica A. Juss (N.O. Meliaceae), popularly known, as 'Neem' is an indigenous tree widely available in India. Almost every part of the tree has long been used in Unani system of medicine for the treatment of a variety of human ailments. The flowers have been mentioned as a remedy useful in controlling diabetes mellitus. The present study had been designed to investigate the hypoglycemic/anti-hyperglycemic effects of the methanolic extract of the flowers of A. indica (Gule-Neem) and its different fractions on normal, glucose fed hyperglycemic, adrenaline induced hyperglycemic and alloxan induced diabetic rats. The methanolic extract was resolved into water soluble and water insoluble fractions. Water soluble portion of the methanolic extract was found to possess significant blood sugar lowering effect in glucose-fed and adrenaline-induced hyperglycemic rats but it did not show such effect in normal and alloxan induced mild and severe diabetic rats. Water-soluble portion was fractionated by employing the polarity criterion with ethyl acetate and butanol. The ethyl acetate fraction was further fractionated into phenolic and non-phenolic fractions. Hypoglycemic effect of these fractions was also evaluated. The results suggest that the flowers of A. indica contain at least two different constituents, responsible for the said activity. These investigations validate the use of flowers of A. indica in diabetes by Unani physicians.

Effect of Gangsim-tang Extract on the Hyperglycemic Mice Induced with Streptozotocin (강심탕이 Streptozotocin로 유발된 생쥐의 고혈당에 미치는 영향)

  • Kim, Yi-Gon;Lee, Young-Su
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.21 no.6
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    • pp.1462-1469
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    • 2007
  • This study has been carried out to understand the effect of Gangsim-tang on the hyperglycemic mice induced with Streptozotocin(STZ). The 60 mg/kg of streptozotocin(STZ) was treated into mice twice by 24 hrs interval and then 120 mg/kg STZ was treated again 3 days after the earlier treated. Control group was administered mice with 0.9% saline(2ml/kg), and experimental groups were administered Gangsim-tang extract(GA group, 10 ㎎/㎏/day; GB group, 30 mg/kg/day) after hyperglycemic induction daily for 6 weeks. The body weight of experimental groups was lower than control. The blood glucose concentration increased continuously, reaching to 298.9 mg/dl after 6 weeks, however, experimental groups of the GA and GB groups significantly(p<0.01) decreased in the 4, 5, and 6 weeks groups. Blood glucose tolerance test was not significant between control and experimental groups. We examined the blood transaminase activities to know the effect of herbal medicine on liver function. The glutamic-oxaloacetic transaminase(GOT) activity was lower in group GB than in control. The glutamic-pyruvic transaminse(GPT) activity was lower in group GA and GB than in control. The superoxide dismutase(SOD) and catalase activities were higher in the group GA compared to control. The results of immunohistochemical study, Langerhan's islet of pancreas was destructed by treatment of STZ in the control, and a few of insulin positive cells observed in the control and experimental group. These results suggest that administration of Gangsim-tang extract to the hyperglycemic mice induced with STZ not regeneration of ${\beta}-cells$ but control of the blood glucose level.

Production and Its Anti-hyperglycemic Effects of γ-Aminobutyric Acid from the Wild Yeast Strain Pichia silvicola UL6-1 and Sporobolomyces carnicolor 402-JB-1

  • Han, Sang-Min;Lee, Jong-Soo
    • Mycobiology
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    • v.45 no.3
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    • pp.199-203
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    • 2017
  • This study was done to produce ${\gamma}$-aminobutyric acid (GABA) from wild yeast as well as investigate its anti-hyperglycemic effects. Among ten GABA-producing yeast strains, Pichia silvicola UL6-1 and Sporobolomyces carnicolor 402-JB-1 produced high GABA concentration of $134.4{\mu}g/mL$ and $179.2{\mu}g/mL$, respectively. P. silvicola UL6-1 showed a maximum GABA yield of $136.5{\mu}g/mL$ and $200.8{\mu}g/mL$ from S. carnicolor 402-JB-1 when they were cultured for 30 hr at $30^{\circ}C$ in yeast extract-peptone-dextrose medium. The cell-free extract from P. silvicola UL6-1 and S. carnicolor 402-JB-1 showed very high anti-hyperglycemic ${\alpha}$-glucosidase inhibitory activity of 72.3% and 69.9%, respectively. Additionally, their cell-free extract-containing GABA showed the anti-hyperglycemic effect in streptozotocin-induced diabetic Sprague-Dawley rats.

Effect of Polysaccharide from Trichosanthes kirilowii on Antidiabetic Activity and Glutathione Metabolism in Hyperglycemic Rats (괄루근으로부터 추출한 다당류의 항당뇨활성 및 당뇨성 쥐의 글루타치온대사에 미치는 영향)

  • 정연봉;이종철
    • YAKHAK HOEJI
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    • v.39 no.5
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    • pp.528-534
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    • 1995
  • This investigation was aimed at the study of the antidiabetic activity and effect on hepatic glutathione metabolism of polysaccharide from Trichosanthes kirilowii in hyperglycemic rats with aboxan (175 mg/Kg, i.p.). As the results, the polysaccharide inhibited the increase of blood glucose, triglyceride level and lactate dehydrogenase activity, but cholesterol not changed. And it increased protein bound-SH, nonprotein bound-SH, glutathione level and inhibited the decrease of glutathione S-transferase.

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Hesperetin suppresses LPS/high glucose-induced inflammatory responses via TLR/MyD88/NF-κB signaling pathways in THP-1 cells

  • Lee, Aeri;Gu, HyunJi;Gwon, Min-Hee;Yun, Jung-Mi
    • Nutrition Research and Practice
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    • v.15 no.5
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    • pp.591-603
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    • 2021
  • BACKGROUND/OBJECTIVES: Unregulated inflammatory responses caused by hyperglycemia may induce diabetes complications. Hesperetin, a bioflavonoid, is a glycoside in citrus fruits and is known to have antioxidant and anticarcinogenic properties. However, the effect of inflammation on the diabetic environment has not been reported to date. In this study, we investigated the effect of hesperetin on proinflammatory cytokine secretion and its underlying mechanistic regulation in THP-1 macrophages with co-treatment LPS and hyperglycemic conditions. MATERIALS/METHODS: THP-1 cells differentiated by PMA (1 µM) were cultured for 48 h in the presence or absence of hesperetin under normoglycemic (5.5 mM/L glucose) or hyperglycemic (25 mM/L glucose) conditions and then treated with LPS (100 ng/mL) for 6 h before harvesting. Inflammation-related proteins and mRNA levels were evaluated by enzyme-linked immunosorbent assay, western blot, and quantitative polymerase chain reaction analyses. RESULTS: Hesperetin (0-100 µM, 48 h) treatment did not affect cell viability. The tumor necrosis factor-α and interleukin-6 levels increased in cells co-treated with LPS under hyperglycemic conditions compared to normoglycemic conditions, and these increases were decreased by hesperetin treatment. The TLR2/4 and MyD88 activity levels increased in cells co-treated with LPS under hyperglycemic conditions compared to normoglycemic conditions; however, hesperetin treatment inhibited the TLR2/4 and MyD88 activity increases. In addition, nuclear factor-κB (NF-κB) and Acetyl-NF-κB levels increased in response to treatment with LPS under hyperglycemic conditions compared to normoglycemic conditions, but those levels were decreased when treated with hesperetin. SIRT3 and SIRT6 expressions were increased by hesperetin treatment. CONCLUSIONS: Our results suggest that hesperetin may be a potential agent for suppressing inflammation in diabetes.