• Title/Summary/Keyword: insulin

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Insulin Resistance in Late Pregnant Rats (임신 후반기 흰쥐의 인슐린 저항성과 그 기전)

  • Chun, Myung-Heup;Kim, Yong-Woon;Park, So-Young;Kim, Jong-Yeon;Lee, Suck-Kang
    • Journal of Yeungnam Medical Science
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    • v.12 no.2
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    • pp.319-330
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    • 1995
  • The influence of normal late pregnancy on insulin action and insulin secretion was studied in the Sprague-Dawley female rats. On 20th day after mating, intravenous glucose tolerance test(IVGTT) was performed in non pregnant control and pregnant rats. As results of IVGTT, glucose disappearance rate was not significantly different in both groups, but secretory response of insulin was significantly(p<0.05) increased in pregnant rat. And the ratio of insulin/glucose was significantly higher in pregnant rats, which means existence of insulin resistance. These insulin resistance was overcomed by increased secretory response of pancreatic insulin. Insulinogenic index(${\Delta}$ insulin/glucose - 5 min) was highly significantly (r=0.62, p<0.01) correlated with progesterone concentration. Glycogen level and amounts of $^{14}C$-glucose incorporated into glycogen after IVGTT were significantly(p<0.05) decreased in the liver, but were not changed significantly in soleus. Glycogen synthase activity of soleus and liver was not differ significantly in the both groups. Insulin binding at varying concentrations of insulin to crude membrane of pregnant liver was not significantly different from control. In conclusions, although these pregnant rats were normal glucose tolerance due to increased secretory response of insulin, that was correlated with progesterone concentration, pregnant rat had insulin resistance. The mechanisms of insulin resistance were not related to defect of insulin binding phase and glycogen synthase, but suggest pre-receptor and/or postreceptor phase.

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Insulin Inhibits the Expression of Adiponectin and AdipoR2 mRNA in Cultured Bovine Adipocytes

  • Sun, Y.G.;Zan, L.S.;Wang, H.B.;Guo, H.F.;Yang, D.P.;Zhao, X.L.;Gui, L.S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.10
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    • pp.1429-1436
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    • 2009
  • Adiponectin is an adipocyte-derived protein that has a regulatory role in energy homeostasis and influences insulin sensitivity. Its effects on glucose utilization and lipid metabolism are mediated by AdipoR1 and AdipoR2. How insulin affects adiponectin gene expression and secretion is still controversial. This study was conducted to determine the expression of adiponectin, AdipRs and $PPAR-\gamma$ during the differentiation of bovine preadipocytes and the effect of insulin on expression of these genes in bovine adipocytes. The bovine preadipocytes started to accumulate lipids three days after differentiation was induced, with increased expression of adiponectin, AdipoR2 and $PPAR-\gamma$ mRNAs. Insulin decreased the expression of adiponectin mRNA in a dose- and time-dependent fashion, and the inhibition was detectable at insulin concentrations as low as 10 nM and as early as 2 h after addition of 100 nM insulin. Insulin also inhibited the expression of AdipoR2 mRNA at concentrations from 1 to 1,000 nM or 24 h after addition of 100 nM insulin, but did not affect the expression of AdipoR1 in bovine adipocytes. Inhibition of PI3K with LY294002 reversed the inhibition of adiponectin and AdipoR2 mRNA expression by insulin. These results suggest that insulin suppresses the expression of adiponectin and AdipoR2 at least partially via the PI3K signal pathway.

The Effect of Clozapine on Central Insulin Response in Rats (항정신병약물 클로자핀이 흰쥐 뇌실로 주입한 인슐린의 반응에 미치는 영향)

  • Kim, Se Hyun;Yu, Hyun Sook;Park, So Young;Kim, Min Kyung;Park, Hong Geun;Kim, Yong Sik
    • Korean Journal of Biological Psychiatry
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    • v.19 no.4
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    • pp.187-192
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    • 2012
  • Objectives Although antipsychotic drug clozapine has superior efficacy, this is hampered by metabolic side effects such as weight gain and diabetes. Recent studies demonstrate that clozapine induces insulin resistance. However, the identity and location of insulin resistance induced by clozapine has not been clarified. In this study, the effect of clozapine on central insulin response was investigated in rats. Methods Male Sprague-Dawley rats received intraperitoneal injection of clozapine or vehicle, which was followed by intracerebroventricular injection of insulin or its vehicle. The effects of clozapine on insulin-induced changes in blood glucose level and Akt phosphorylation in hypothalamus were investigated. Results Intraperitoneal injection of clozapine (20 mg/kg) increased blood glucose in rats. Intracerebroventricular injection of insulin reduced blood glucose in rats, which was blunted by pretreatment of clozapine. Accompanied with the antagonistic effect of clozapine to central insulin action in terms of blood glucose, clozapine inhibited the insulin-induced phosphorylation of Akt at Ser473 in rat hypothalamus. Conclusion Administration of clozapine inhibited the central insulin-induced changes in blood glucose and Akt phosphorylation in rat hypothalamus. These findings suggest that hypothalamus could be the site of action for the clozapine-induced insulin resistance.

Low Plasma Insulin Level Prolonged Hypoglycemia after High dose Insulin Lispro Injection (고용량 Insulin lispro 피하 주사 후 저 인슐린 혈증을 보인 지속적 저혈당성 혼수 환자 1례)

  • Kang, Jeong Ho;Park, Hyun Soo
    • Journal of The Korean Society of Clinical Toxicology
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    • v.14 no.2
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    • pp.151-154
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    • 2016
  • Increased plasma insulin levels are often observed in exogenous insulin overdose patients. However, plasma insulin level may decrease with time. We report a case of low plasma insulin level hypoglycemia after insulin lispro overdose. The patient was a 37-year-old man with no previous medical history who suspected insulin lispro overdose. Upon arrival, his Glasgow coma scale was 3 points and his blood sugar level (BSL) was 24 mg/dl. We found five humalog-quick-pen (insulin lispro) in his bag. There was no elevation of glucose level, despite an initial 50 ml bolus of 50% glucose and 150 cc/hr of 10% dextrose continuous intravenous infusion. He also suffered from generalized tonic-clonic seizure, which was treated with lorazepam and phenytoin. We conducted endotracheal intubation, after which he was admitted to the intensive care unit (ICU). There were recurrent events of hypoglycemia below BSL<50 mg/dl after admission. We repeatedly infused 50 ml 50% glucose 10 times and administered 1 mg of glucagon two times. The plasma insulin level was 0.2 uU/ml on initial blood sampling and 0.2 uU/ml after 5 hours. After 13 hours, his BSL stabilized but his mental status had not recovered. Diffuse brain injury was observed upon magnetic resonance imaging (MRI) and severe diffuse cerebral dysfunction was found on electroencephalography (EEG). Despite 35 days of ICU care, he died from ventilator associated pneumonia.

Effect of Chromium Picolinate on Glucose Tolerance and Insulin Sensitivity in the Type I and II Diabetic Rats (1형과 2형 당뇨모델 흰쥐에서 Chromium Picolinate의 당내성과 인슬린 감수성에 대한 영향)

  • 신현진;홍정희;고현철;신인철;강주섭;최호순;김태화;김동선;엄애선
    • Biomolecules & Therapeutics
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    • v.9 no.4
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    • pp.277-281
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    • 2001
  • Chromium is an essential nutrient and participates in glucose and lipid metabolism in human beings and animals. The present study was conducted to assess the effects of chromium picolinate (Cr-pic) on glucose tolerance and insulin sensitivity in type I and ll diabetic rats. The experimental groups were type I diabetic (streptozotocin-induced: 40 mg/kg, i.p.) and type II diabetic (Goto-Kakizaki rats) models. Each group was subdivided into control. low-dose and high-dose of Cr-pic treated groups. The Cr-pic was orally administered with Cr-pic (100 mg/kg for low dose group and 200 mg/kg for high dose group) for 4 weeks. And then we performed intraperitoneal glucose tolerance test (IPGTT) and insulin sensitivity test (ITT). The glucose tolerance test was carried out by inection of glucose (2 g/kg, i.p.). The peripheral insulin sensitivity test was con- ducted by injection of insulin (5 units/kg, s.c.) and glucose. We performed determining of blood glucose concentration at 0, 10, 30, 60, 90, and 120 min using automated glucose analyzer. The plasma insulin concentration was determined by rat insulin EIA kit. Administration of Cr-pic improved weight gain in all group s with higher significant in the low-dose group. There was no significance between the control and the Cr-pic treated groups in the area under the blood glucose curve and serum insulin concentration plots of IPGTT and peripheral ITT in type I diabetic rats. But Cr-pic treated groups showed significantly lower levels of the area under the blood glucose currie during IPGTT and ITT and the high-dose group showed less effects compared with the low-dose group in the type II diabetic rats. The plasma insulin concentration of both diabetic groups was not influenced by Cr-pic supplementation. We can conclude that chromium picolinate may improve the endogenous and exogenous insulin action and peripheral insulin sensitivity in type II diabetic rats.

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Effect of Insulin-like Action and Insulin Sensitizing on 3T3-Ll Adipocytes from Coicis Semen (의이인이 3T3-Ll Adipocytes에서 인슐린성 작용과 인슐린 민감성에 미치는 영향)

  • 김종욱;최용휴;주영승;박선민;이미영;김호경;김홍준;고병섭
    • The Journal of Korean Medicine
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    • v.23 no.1
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    • pp.83-91
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    • 2002
  • Objectives : In this study, water extracts from Coix lachryma-jobi Linne var. mayuen Stapf. were investigated for their effects on insulin-like action and glucose uptake in 3T3-Ll cells. Methods : We examined the effects of insulin-like action on the differentiation of 3T3-Ll fibroblasts. The Coicis Semen was treated with hot water and the extract was freeze-dried. The hot water extract was chromatographed on nonionic polymer resin (Amberlite XAD-4, Sigma) with distilled water (Fr. 1), 20% (Fr. 2), 40% (Fr. 3), 60% (Fr. 4), 80% (Fr. 5), and 100% EtOH (Fr. 6), successively. Results : Total extract of Coicis Semen was fractionated into 0 to 100% MeOH with Amberlite XDA-4 column. Treatment of cells with $10{\;}\mu\textrm{g}/ml$ of total extracts of Coicis Semen significantly increased the differentiation (p<0.05). At $1{\;}\mu\textrm{g}/ml$ level of insulin, the differentiation was accelerated (p<0.01). The effect of extracts plus insulin on the differentiation was greater than that of insulin alone. In 3T3-Ll adipocytes, glucose uptake was higher by 2.7 times with 5 uM of total extract in low dosage of insulin (3 ng/ml) than without total extract. 5 and 50 uM of water and 40% MeOH fractions increased glucose uptake by 3.5 times in 3T3-Ll adipocytes (p<0.00l). Conclusions : Coicis Semen contains compounds which playa role of insulin-like action and insulin sensitizer.

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Effects of $\beta$-Mercaptoethanol and Hydrogen Peroxide on Enzymatic Conversion of Human Proinsulin to Insulin

  • Son, Young-Jin;Kim, Chang-Kyu;Choi, Byoung-Taek;Park, Yong-Cheol;Seo, Jin-Ho
    • Journal of Microbiology and Biotechnology
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    • v.18 no.5
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    • pp.983-989
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    • 2008
  • Human insulin is a hormone well-known to regulate the blood glucose level. Recombinant preproinsulin, a precursor of authentic insulin, is typically produced in E. coli as an inactive inclusion body, the solubilization of which needs the addition of reducing agents such as $\beta$-mercaptoethanol. To make authentic insulin, recombinant preproinsulin is modified enzymatically by trypsin and carboxypeptidase B. The effects of $\beta$-mercaptoethanol on the formation of human insulin derivatives were investigated in the enzymatic modification by using commercially available human proinsulin as a substrate. Addition of 1 mM $\beta$-mercaptoethanol induced the formation of various insulin derivatives. Among them, the second major one, impurity 3, was found to be identical to the insulin B chain fragment from $Phe_1$ to $Glu_{21}$. Minimization of the formation of insulin derivatives and concomitant improvement of the production yield of human insulin were achieved by the addition of hydrogen peroxide. Hydrogen peroxide bound with $\beta$-mercaptoethanol and thereby reduced the negative effects of $\beta$-mercaptoethanol considerably. Elimination of the impurity 3 and other derivatives by the addition of over 10 mM hydrogen peroxide in the presence of $\beta$-mercaptoethanolled to a 1.3-fold increase in the recovery efficiency of insulin, compared with those for the case without hydrogen peroxide. The positive effects of hydrogen peroxide were also confirmed with recombinant human preproinsulin expressed in recombinant E. coli as an inclusion body.

Effect of Insulin Resistance on the Metabolism of Periparturient Dairy Cattle (분만전후기 젖소에서 insulin resistance의 대사적 작용)

  • Kim, Jin-Wook
    • Journal of agriculture & life science
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    • v.44 no.5
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    • pp.65-74
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    • 2010
  • Dairy cow undergoes major adaptations in glucose and lipid metabolism to meet fetal and mammary nutrient requirements during the periparturient period. These adaptations are characterized by major changes in response to the homeostatic signal of insulin. In response to insulin, fatty acids are mobilized to meet energy demand. And cow develop insulin resistance during the late prepartum period to facilitate glucose sparing for the fetus and mammary gland. Insulin resistance is an important adaptation and may be partly responsible for the large increase in plasma nonesterified fatty acid (NEFA) that occurs prior to parturition and coincides with the characteristic decrease in dry matter intake (DMI). Modulation of insulin resistance by administration of thiazolidinedione (TZD) during the periparturient period, likely through the activation of $PPAR{\gamma}$, has substantial potential to minimize energy and immune-related metabolic disorders, and thus may result in increased productivity and improved health of dairy cows.

Physiological Function of Insulin-like Peptides in Insects (곤충 insulin-like peptide의 생리 조절 작용)

  • Kim, Doo Kyung;Lee, Jaemin
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.85-90
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    • 2022
  • Insulin and insulin-like growth factor-1 (IGF-1) are hormones that play an important role in the physiological regulation of metabolism, growth, and longevity in vertebrates. Likewise, insulin-like peptides (ILPs), which are structurally similar to insulin and IGF-1, are crucial in insect physiology. In this review, we present an integrated summary of insect ILPs and their receptor signaling, which has been shown to be comparable to insulin and IGF-1 receptor signaling in vertebrates based on genetic studies of Drosophila melanogaster. Additionally, we review the control of ILP synthesis and secretion in the brain in response to nutrition, as well as the ILPs' physiological role in insect metabolism. Moreover, we discuss the contribution of ILPs to growth, development, reproduction, and diapause. Finally, we consider the possibility of targeting ILP receptor signaling in pest management.

The Impact of Psychological Insulin Resistance on Self-Care Activities in Patients with Type 2 Diabetes Mellitus Undergoing Insulin Therapy (인슐린요법을 받는 제2형 당뇨병 환자의 심리적 인슐린저항성이 자가관리에 미치는 효과)

  • Kim, Mi Gyeong;Song, Hyo Jeong
    • Journal of Korean Biological Nursing Science
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    • v.24 no.1
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    • pp.58-66
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    • 2022
  • Purpose: The purpose of this study was to identify the level of psychological insulin resistance and self-care activities and to evaluate the factors affecting self-care activities in patients with type 2 diabetes mellitus undergoing insulin therapy to provide basic data for the development of educational programs. Methods: Data were collected through the interviews using a structured questionnaire from August 29 to October 20, 2017, from the patients with type 2 diabetes mellitus visiting the Diabetes Mellitus Center at H-General Hospital in J-city. The subjects were 168 patients who had been being treated via self-injection for at least three months after the start of insulin therapy. Data analyses were conducted using t-test, ANOVA, Pearson's correlation coefficients, and stepwise multiple regression using the SAS WIN 9.2 program. Results: The mean score of psychological insulin resistance was 61.25 (range 19-95) and the mean score of self-care activities was 53.19 (range 18-90). Self-care activities were significantly different by gender (t = -2.94, p= .004), perceived health status (F= 7.00, p< .001), and hypoglycemia during the last three months (t= -2.47, p= .015). Negative correlation was observed between psychological insulin resistance and self-care activities (r= -.33, p< .001). Self-care activities were significantly predicted by psychological insulin resistance, perceived health status, gender, and hypoglycemia during the last three months, and 19.0% of the variance in self-care activities was explained (F= 9.01, p< .001). Conclusion: Psychological insulin resistance in patients undergoing insulin therapy and its effects on self-care activities identified in this study will be useful in starting and maintaining insulin therapy in the future.