• Title/Summary/Keyword: insulin secretion

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Reduction of Insulin Resistance by Momordica Charantia with Lactobacillus Acidophilus CBT-LA1 or Lactiplantibacillus Plantarum CBT-LP3 Improves Hepatosteatosis

  • Dong-Jin Kim;Ju Sung Lee;Seungwoo Kim;Sang Kyun Park;Yeo-Sang Yoon;Yougku Ryu;Myung Jun Chung
    • Microbiology and Biotechnology Letters
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    • v.52 no.3
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    • pp.275-287
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    • 2024
  • Insulin resistance is a primary risk factor for developing diabetes. However, diabetes drugs generally focus on regulating and lowering patients' blood glucose levels. In recent years, diverse materials have been evaluated to improve insulin resistance and hinder the development of diabetes. Momordica charantia extract (MCE) and lactic acid bacteria (LAB) have been considered as potential therapeutic agents against insulin resistance and hyperglycemia. In a streptozotocin-induced type 1 diabetes animal model, treatment with MCE and LAB had no effect on hyperglycemia. To evaluate the effect of MCE and LAB on insulin resistance, we chose a high-fat diet-induced insulin resistance model and co-administered MCE and Lactobacillus Acidophilus CBT-LA1, Lactiplantibacillus plantarum CBT-LP3, or Lacticaseibacillus rhamnosus CBT-LR5. MCE with CBT-LA1 or CBT-LP3 improved insulin resistance and hepatosteatosis. However, the effect of MCE and MCE with CBT-LR5 was weaker than the effect of MCE with CBT-LA1 or CBT-LP3. Momordica charantia induced insulin secretion from RIN-m5F in a dose-dependent manner. Interestingly, CBT-LA1 and CBT-LP3 enhanced the insulin secretion of MCE. These results suggest that the co-administration of MCE and a specific LAB is one approach for overcoming insulin resistance and hyperglycemia.

Effect of Cinnamomum camphora Leaf Fractions on Insulin Action (3T3-L1 지방세포에서 녹나무 잎 추출분획물이 인슐린작용에 미치는 효과)

  • Ko, Byoung-Seob;Lee, Mi-Young;Kim, Ho-Kyoung;Chun, Jin-Mi;Choi, Soo-Bong;Jun, Dong-Wha;Jang, Jin-Sun;Park, Sunmin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.9
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    • pp.1336-1343
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    • 2005
  • In the present study, we screened candidates for enhancing insulin action and secretion from Cinnamomum camphora (CC) fractions, in 3T3-L1 adipocytes and Min6 cells by investigating insulin- stimulated glucose uptake and glucose-stimulated insulin secretion, respectively. CC were extracted by $70\%$ ethanol followed by XAD-4 column chromatography with serial mixture solvents of methanol and water, and the fractional extractions were utilized for determining insulin action and secretion, and $\alpha$-glucoamylase suppressing activity, A significant insulin-stimulated glucose uptake was observed in 3T3-L1 adipocytes, giving 0.5 or $5{\mu}g/mL$ of $40\%\;and\;60\%$ methanol fractions plus 0.2 nM insulin, compared to the treatment of DMSO plus 0.2 nM insulin. The treatments of $40\%\;and\;60\%$ methanol fractions plus 0.2 nM insulin reached the glucose uptake of 10 nM insulin treatment. The $40\%$ methanol fraction increased triglyceride accumulation by stimulating differentiation and triglyceride synthesis similar to pioglitazone, PPAR-$\gamma$ agonist. No inhibition of $\alpha$-glucoamylase activity of CC fractions was observed. They did not modulate the insulin secretion capacity In either low or high glucose media. These results suggest that $40\%$ methanol fraction contains a potential insulin sensitizer to have a similar function of PPAR-$\gamma$ agonist. Crude CC extract may improve glucose utilization by enhancing insulin-stimulated glucose uptake without elevating glucose stimulated insulin secretion.

In vitro Anti-diabetic Effects of Crude Extracts of Platycodi Radix (In vitro에서 길경 추출 분획물의 항당뇨 효과 조사)

  • Ko, Byoung-Seob;Kwon, Dae-Young;Hong, Sang-Mee;Park, Sun-Min
    • Korean Journal of Food Science and Technology
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    • v.39 no.6
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    • pp.701-707
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    • 2007
  • Anti-diabetic effect of Platycodi radix (PR) extract fractions was determined if vitro by investigating insulin-like action, insulin sensitizing action, glucose-stimulated insulin secretion, gene expression related to ${\beta}-cell$ function and mass, and ${\alpha}$-glucoamylase suppressing action. Insulin-like activity was not promoted by the treatment of PR methanol factions in 373-L1 fibroblast. However, treatment with 0, 20 and 100% PR methanol fractions along with 1 ng/mL insulin increased insulin-stimulated glucose uptake in 373-L1 adipocytes. In addition, the treatment of 0% and 100% methanol fractions along with differentiation inducers significantly increased the differentiation of 373-L1 fibroblasts to adipocytes. These fractions may contain insulin sensitizer. The 20%, 80% and 100% methanol fractions enhanced glucose-stimulated insulin secretion in Min6 cells, insulin secreting cell line. This was related to the mechanism to promote glucose sensing and ${\beta}-cell$ proliferation, which was regulated by the induction of IRS-2, glucokinase and PDX-1 genes. As expected, 20, 80 and 100% methanol fractions increased mRNA levels of IRS-2, glucokinase and PDX-1 genes. However, PR fractions did not affect the ${\alpha}-glucoamylase$ activity in vitro. These data suggested that PR extract fractions have anti-diabetic actions through improving insulin sensitization, glucose-stimulated insulin secretion, and ${\beta}-cell$ proliferation. Therefore, PR extracts can be beneficial for anti-diabetic treatment in lean diabetic patients.

Mechanisms of Insulinotropic Effect of YHB-2017 [Genistein] Isolated from fermentation Broths of Streptomyces sp. (방선균에서 유래한 YHB-2017 [Genistein]의 인슐린 분비 촉진 작용 기전)

  • Kwag, Won-Jae;Park, You-Hoi;Park, Jun-Chul;Lee, Byung-Kyu;Kang, Yup;Choe, Tae-Boo
    • KSBB Journal
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    • v.21 no.6 s.101
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    • pp.466-473
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    • 2006
  • Impaired insulin secretion from pancreatic beta-cells in response to glucose is an important feature in the pathology of non-insulin-dependent diabetes mellitus (NIDDM). In the course of screening for useful insulin secretagogues, we have isolated and identified YHB-2017 (Genistein) as a insulin secretion potentiator from fermentation broths of our in-house microbial library. The insulinotropic activity of YHB-2017 in isolated rat pancreatic islets was exerted only at high concentration of glucose (8.3-16 mM) but not at low concentration of glucose (3.3-5.5 mM). Also, in perifusion study with isolated rat pancreatic islets, YHB-2017 stimulated insulin secretion in a time-dependent manner when YHB-2017 was added to KRB buffer containing 16 mM glucose. In the presence of $200\;{\mu}M$ diazoxide and 35 mM KCI, which stimulates maximum $Ca^{2+}$ influx independently of KATP channel, YHB-2017 enhanced KATP channel-independent insulin secretion at high concentration glucose (16 mM). To elucidate the mechanisms of the glucose-dependent potentiation effect of YHB-2017, pharmacologic inhibitors for protein kinase A, protein kinase C and calcium/calmodulin kinase II were pre-treated and then the potentiation effect of YHB-2017 on insulin secretion was investigated. Pre-treatment of H89 as a PKA inhibitor had a significant inhibitory effect on YHB-2017-induced potentiation effect. Furthermore, western immunoblotting analyses revealed that YHB-2017 increased phosphorylation of PKA substrates and cAMP response element-binding protein (CREB) under high concentration of glucose. These results demonstrated that the insulinotropic effect of YHB-2017 is mediated through PKA signal pathway and activated amplifying $K_{ATP}$ channel-independent insulin secretion pathway.

Computer Simulation of Glucose-insulin Kinetics During Intravenous Glucose Tolerance Test

  • Min, B.G;Woo, E.J.
    • Journal of Biomedical Engineering Research
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    • v.4 no.1
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    • pp.9-14
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    • 1983
  • A new quantitative method was developed for separation of three interactive physiological factors (hepatic glucose balance, peripheral tissue's insulin resistivity, and insulin secretion rate) influencing glucose intolerance in diabetic mellitus using an equivalent circuit model and the intravenous glucose tolerance test (IVGTT) in six dogs and twenty two humans. The results show that the estimated model parameters of the above three factors are useful for evaluating different glucose-insulin kinetics in normal and diabetic subjects.

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Inhibition of glutamate dehydrogenase and insulin secretion by KHG26377 does not involve ADP-ribosylation by SIRT4 or deacetylation by SIRT3

  • Kim, Eun-A;Yang, Seung-Ju;Choi, Soo-Young;Lee, Woo-Je;Cho, Sung-Woo
    • BMB Reports
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    • v.45 no.8
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    • pp.458-463
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    • 2012
  • We investigated the mechanisms involved in KHG26377 regulation of glutamate dehydrogenase (GDH) activity, focusing on the roles of SIRT4 and SIRT3. Intraperitoneal injection of mice with KHG26377 reduced GDH activity with concomitant repression of glucose-induced insulin secretion. Consistent with their known functions, SIRT4 ribosylated GDH and reduced its activity, and SIRT3 deacetylated GDH, increasing its activity. However, KHG26377 did not affect SIRT4-mediated ADP-ribosylation/inhibition or SIRT3-mediated deacetylation/activation of GDH. KHG26377 had no effect on SIRT4 protein levels, and did not alter total GDH, acetylated GDH, or SIRT3 protein levels in pancreatic mitochondrial lysates. These results suggest that the mechanism by which KHG26377 inhibits GDH activity and insulin secretion does not involve ADP-ribosylation of GDH by SIRT4 or deacetylation of GDH by SIRT3.

Effect of Eriobotryae folium extract on glucokinase and hexokinase activities of diabetes mellitus mice induced by interleukin-$1{\beta}$ (IL-1${\beta}$ 처리(處理) 당뇨병(糖尿病) 마우스의 췌장(膵臟) glucokinase 및 hexokinase 활성(活性)에 대(對)한 비파엽(枇杷葉)의 영향(影響))

  • Yoon, Cheol-Ho;Shin, Hyeon-Chul;Jeong, Ji-Cheon
    • The Journal of Internal Korean Medicine
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    • v.19 no.1
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    • pp.466-476
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    • 1998
  • We investigated the in vivo effect of an aqueous extract (referred to as EF) from Eriobotryae folium on glucokinase and hexokinase activities of diabetes mellitus induced by $interleukin-1{\beta}\;(IL-1{\beta})$. After 1 week of $IL-1{\beta}$ injection, the levels of serum glucose concentration and insulin secretion were dramatically increased. However, the insulin secretion was decreased with administration of EF. The level of glucose concentration was decreased by EF administration. Furthermore, it was observed that EF was effective in recovering the levels of insulin secretion. Enzyme activities of the glucokinase and hexokinase, which are key enzymes of glucose phosphorylastion, were decreased by $IL-1{\beta}$. EF administration to the mice allowed proportional increasing by stimulation of induction of enzyme activities as high as normal group. These results suggested that EF is highly effective in treatment of diabetes mellitus induce by $IL-1{\beta}$.

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Determination of Insulin Signaling Pathways in Hepatocytes

  • Kim, Sang-Kyum
    • Toxicological Research
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    • v.21 no.3
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    • pp.195-208
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    • 2005
  • Diabetes is a major cause of morbidity and mortality, and associated with a high risk of atherosclerosis, and liver, kidney, nerve and tissue damage. Defective insulin secretion in pancreas and/or insulin resistance in peripheral tissues is a central component of diabetes. It is well established that, regardless of the degree of muscle insulin resistance, glucose levels in diabetic and non-diabetic individuals are determined by the rate of hepatic glucose production. Moreover recently studies using liver-specific insulin receptor knockout mice show the paramount role of the liver in insulin resistance and diabetes. Insulin exerts a multifaceted and highly integrated series of actions via its intracellular signaling systems. The first major section of this review defines the major insulin-mediated signaling pathways including phosphatidylinositol 3-kinase and mitogen activated protein kinases. The second major section of the review presents a summary and evaluation of methods for determination of the role and function of signaling pathways, including methods for determination of kinase phosphorylation, the use of pharmacological inhibitors of kinase and dominant-negative kinase constructs, and the application of new RNA interference methods.

Study of Growth Disturbance and Endocrine, in the view of Oriental Medicine (소아 성장장애와 내분비에 대한 한의학적 고찰)

  • Jun Chan-Il
    • The Journal of Pediatrics of Korean Medicine
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    • v.15 no.1
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    • pp.105-115
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    • 2001
  • The relation of endocrine in the western medicine and zangfu-organ functions in Korean medicine, related to growth disturbance, was studied and derived the following results. 1. The hormone most related to growth disturbance is, directly secreted from the anterior pituitary or is stimulated and secreted in the target grands, growth hormone, thyroid, adrenocortical hormone, gonadial hormone and is insulin secreted from $\beta$ cell of langerhans' slands of pancreas. 2. the pituitary has the most close relation with the kidney in the five zang-organ. Because the kidney is innate origin(先天之本) and promotes qi and blood(生化氣血), stores the essence of life(藏精), dominates the bones(主骨) and promotes the marrow(生骨髓). Especially it is connected with brain(通於腦). 3. In the children growth, the endocrine action in the pituitary has the most close relation with the kidney, As in the reports of the brain and spinal cord, bone, store essence of life, sexual maturation and decline(kidney-qi, sexual functions of both sexes(天癸)) etc, and cause of cretinism, dwarf in the main subject. 4. Somatomedin is the most important factor of the growth factors, IGF in another word. The unification of IGF and secretion is controlled firstly according to growth hormone, however is very closely related to the nutrition status in the non-hormonic causes. Also, it is affected very much by the insulin. 5. Insulin is one of the important hormone related to the growth and is secreted from the pancreas. Pancreas belongs to the functional system of spleen in oriental medicine, thus the growth disturbance, occurred due to error in insulin secretion and nutrition(in another words, the lack of postnatal essential substance from food-stuff(水穀精氣)), is closely related to the spleen. 6. From the results driven above, the hormone action of endocrine and problem in secretion, related to the growth disturbance, must be focused on the differentiation of symptoms and signs of the kidney and the spleen in oriental medicine.

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Decreased Insulin Secretion in Dogs with Chronic Mitral Valve Insufficiency (만성 이첨판 폐쇄부전증 개에서 인슐린 분비기능 감소)

  • Kang, Jong-Il;Park, Seong-Jun;Lee, Seung-Gon
    • Journal of Veterinary Clinics
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    • v.31 no.3
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    • pp.163-169
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    • 2014
  • Glucose metabolism abnormalities secondary to heart failure, including insulin resistance (IR) and impaired fasting glucose, have been gradually recognized as important prognostic factors in disease progression. However, to date, no study has investigated glucose abnormalities in dogs with chronic mitral valve insufficiency (CMVD). Thus, we hypothesized that glucose metabolism abnormalities due to heart failure may develop in dogs with CMVD. A prospective study was performed on 113 client-owned dogs with variable CMVD severities. Serum insulin, glucagon, fructosamine, and glucose concentrations were measured, and insulin resistance was determined using the homeostatic model assessment (HOMA) score. The serum insulin concentration had a significant inverse association with the heart failure severity. However, there was no significant association between the heart failure severity and fructosamine, HOMA score, and fasting blood glucose. Insulin, fructosamine, and HOMA had a significant positive association with body condition scores (BCS), whereas glucose had no association. This study found that insulin secretion in dogs with naturally occurring heart failure due to CMVD might be compromised as the disease worsens.