• 제목/요약/키워드: metabolic energy

검색결과 695건 처리시간 0.028초

Effect of Galanin Infusion into the Third Ventricle on Plasma Concentrations of Metabolic Parameters in Goats Fed Diets of Different Energy Content

  • Khazali, H.;Towhidi, A.;Moravej, H.;Parhizkar, A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제21권6호
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    • pp.845-852
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    • 2008
  • The goal of this study was to determine whether galanin affects the mean plasma concentrations of metabolic parameters such as thyroxine (T4), triiodothyronine (T3), growth hormone (GH), insulin, glucagon, glucose, fatty acid and urea in goats fed diets differing in energy content. Sixteen goats were randomly divided into 4 groups. Animals in groups 1 and 2 were fed 100% and animals in groups 3 and 4 were fed 50% energy content in the diet for 20 days. After 20 days, animals in groups 1 and 3 received a daily infusion of $1{\mu}g$ galanin and groups 2 and 4 received a daily infusion of $2{\mu}g$ galanin into their third ventricle for 5 days. Blood samples were collected daily from the jugular vein before infusion on day 4 until 4 days after the last infusion of galanin. Samples were assayed for plasma T3, T4, GH, insulin and glucagon concentrations by double-antibody RIA. Glucose, fatty acid and urea concentrations were also measured. Lower dietary energy intake and infusions of 1 and $2{\mu}g$ galanin significantly (p<0.01) decreased the mean plasma concentrations of T3, T4, insulin and glucose and significantly (p<0.01) increased the mean plasma concentrations of GH, glucagon, fatty acid and urea of the animals in groups 3 and 4. Different dosages of the galanin infusions did not change the plasma concentrations of the metabolic parameters in the animals fed a normal dietary energy content. The results of this experiment indicated that galanin may negatively affect T3, T4, insulin and glucose and increase GH, glucagon, fatty acid and urea in goats with negative energy balance, but not in those with positive energy balance.

Metabolic Rebalancing of CR6 Interaction Factor 1-Deficient Mouse Embryonic Fibroblasts: A Mass Spectrometry-Based Metabolic Analysis

  • Tadi, Surendar;Kim, Soung Jung;Ryu, Min Jeong;Park, Taeseong;Jeong, Ji-Seon;Kim, Young Hwan;Kweon, Gi Ryang;Shong, Minho;Yim, Yong-Hyeon
    • Bulletin of the Korean Chemical Society
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    • 제34권1호
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    • pp.35-41
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    • 2013
  • Metabolic analysis of CR6 interacting factor 1 (Crif1) deficient mouse embryonic fibroblasts with impaired oxidative phosphorylation has been carried out using LC-MS/MS and GC-MS methods. Metabolic profiles of the Crif1 deficient cells were comprehensively obtained for the first time. Loss of oxidative phosphorylation functions in mitochondria resulted in cancer-like metabolic reprogramming with consumption of majority of glucose carbon from up-regulated glycolysis to produce lactate, suppressed utilization of glucose carbon in the TCA cycle, increased amounts of amino acids. The changes in metabolic profile of the Crif1 deficient cells are most probably a consequence of metabolic reprogramming to meet the needs of energy balance and anabolic precursors in compensation for the loss of major oxidative phosphorylation functions.

Identification of Novel Metabolic Proteins Released by Insulin Signaling of the Rat Hypothalmus Using Liquid Chromatography-Mass Spectrometry (LC-MS)

  • Chin, Chur
    • Journal of Korean Neurosurgical Society
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    • 제42권6호
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    • pp.470-474
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    • 2007
  • Objective : The brain is dependent on glucose as an energy source. Intricate homeostatic mechanisms have been implicated in maintaining the blood glucose concentration in the brain. The aim of this study is to find the way to identify the metabolic proteins regulating the glucose in rat hypothalamus. Methods : In this study, we analysed the secretome from rat hypothalamus in vivo. We introduced 500 nM of insulin into the rat hypothalamus. The chromatographic patterns of the secretome were identified, after which Mass Spectrometry-Mass Spectrometry (MS-MS) analysis was performed. Results : In Liquid Chromatography-Mass Spectrometry (LC-MS) analysis, 60 proteins were identified in the secretome. Among them, 8 novel proteins were unveiled and were associated with the energy metabolism of insulin signaling in mitochondria of rat hypothalamic neuron. Nineteen other proteins have unknown functions. These ligands were confirmed to be secreting from the rat hypothalmus on insulin signaling by western blotting. Conclusion : The hypothalamus is the master endocrine gland responsible for the regulation of various physiological and metabolic processes. Proteomics using LC-MS analysis offer a efficient means for generating a comprehensive analysis of hypothalamic protein expression by insulin signaling.

한국 성인의 밥 섭취 정도와 잡곡밥 섭취 유무에 따른 영양섭취실태 및 대사증후군 위험수준 평가 - 2007-2008년 국민건강영양조사 자료를 이용하여 - (Nutritional Evaluation and Its Relation to the Risk of Metabolic Syndrome according to the Consumption of Cooked Rice and Cooked Rice with Multi-grains in Korean Adults: Based on 2007-2008 Korean National Health and Nutrition Examination Survey)

  • 손수현;이화정;박경;하태열;서정숙
    • 대한지역사회영양학회지
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    • 제18권1호
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    • pp.77-87
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    • 2013
  • This study was conducted to investigate the nutrient intakes of subjects by quartile of percent energy intake from cooked rice, consumption of cooked rice mixed with multi-grains and to evaluate rice consumption in relation to the risk of metabolic syndrome. The subjects were 5,830 males and females aged between 20~64 years based on 2007-2008 KNHNES data. Levels of percent energy intake from cooked rice were classified into 4 groups (Q1, Q2, Q3, Q4 groups: 25% of each) using data of 24-hour recall method from KNHNES. Using medical examination and questionnaire, subjects were classified according to diagnostic criteria of metabolic syndrome. The subjects with higher age, being married, lower education, lower economic level were more likely to take higher percent energy intake from cooked rice. Quartile Q3 of percent energy intake from cooked rice tended to show higher Index of Nutritional Quality (INQ) for fiber, calcium, iron, potassium and vitamin A. INQ of protein, dietary fiber, calcium, thiamin, phosphorus, potassium, riboflavin, niacin and vitamin C by consumption of cooked rice mixed with multi-grains was higher than that by consumption of cooked white rice when adjusted for age. No association with a risk for metabolic syndrome was found for quartile of percent energy intake from cooked rice or cooked rice mixed with multi-grains compared to cooked white rice after adjusting for energy, gender, age, BMI, alcohol, smoking, income and physical activity. In conclusion, consumption of over 54% energy intake from cooked rice or only cooked white rice showed relatively low INQs, but was not associated with a higher risk for metabolic syndrome.

신생아의 산-염기 균형과 대사성 산증 (Acid-base Balance and Metabolic Acidosis in Neonates)

  • 이병섭
    • Neonatal Medicine
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    • 제17권2호
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    • pp.155-160
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    • 2010
  • Metabolic acidosis is commonly encountered issues in the management of critically ill neonates and especially of preterm infants during early neonatal days. In extremely premature infants, low glomerular filtration rate and immaturity of renal tubules to produce new bicarbonate causes renal bicarbonate loss. Higher intake of amino acids, relatively greater contribution of protein to the energy metabolism and mineralization process in growing bones are also responsible for higher acid load in premature infant than in adult. Despite widespread use of sodium bicarbonate in the management of severe metabolic acidosis, use of sodium bicarbonate in premature infants should be restricted to a reasonable but unproven exception such as ongoing renal loss. Despite concern about the low pH value (<7.2) which can compromise cellular metabolic function, no treatment guideline has been established regarding the management of metabolic acidosis in premature infants. Appropriately powered randomized controlled trials of base therapy to treat metabolic acidosis in critically ill newborn infants are demanding.

Acute Acquired Metabolic Encephalopathy Based on Diffusion MRI

  • Se Jeong Jeon;See Sung Choi;Ha Yon Kim;In Kyu Yu
    • Korean Journal of Radiology
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    • 제22권12호
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    • pp.2034-2051
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    • 2021
  • Metabolic encephalopathy is a critical condition that can be challenging to diagnose. Imaging provides early clues to confirm clinical suspicions and plays an important role in the diagnosis, assessment of the response to therapy, and prognosis prediction. Diffusion-weighted imaging is a sensitive technique used to evaluate metabolic encephalopathy at an early stage. Metabolic encephalopathies often involve the deep regions of the gray matter because they have high energy requirements and are susceptible to metabolic disturbances. Understanding the imaging patterns of various metabolic encephalopathies can help narrow the differential diagnosis and improve the prognosis of patients by initiating proper treatment regimen early.

Effects of endurance training for 4weeks on resting metabolic rate and excess post-exercise oxygen consumption in mouse

  • Jeon, Yerim;Kim, Jisu;Hwang, Hyejung;Lim, Kiwon
    • 운동영양학회지
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    • 제16권2호
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    • pp.113-122
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    • 2012
  • This study assessed the amount of energy consumed and fat deposition after endurance training in order to review the effect of 4-week endurance exercise on resting metabolic rate of a mouse during and after exercise and the effect of exercise. A total of 19 seven-week-old ICR male mice were used as the study subject. Those mice were divided into sedentary group (Sed) and trained group (Tr) after a week of environment adaption. The Tr group was trained with endurance exercise five times a week for four weeks. Weight and the amount of food intake were daily weighed and resting metabolic rate and metabolic rate after exercise were assessed before starting exercise and on the fourth week after training. Metabolic rate during exercise were measured four weeks after training. At the end of breeding period, statistically significant difference was shown in weights of trained and sedentary groups (p < 0.05). During a resting period, no significant difference was shown in oxygen intake, respiratory exchange ratio, and the amount of carbohydrate and fat oxidized. Moreover, no significant difference was shown in excess post-exercise oxygen consumption (EPOC) of an hour period after training. In contrast, the maximal oxygen uptake (VO2 max) was approximately 11.1% higher in trained group after training compare to before. However, there was no significant difference in respiratory exchange ratio and carbohydrate and fat oxidization. During exercise, oxygen uptake, carbon dioxide production, and respiratory exchange ratio in energy metabolism during exercise showed no significant difference. However, significant difference was exhibited in the amount of fat oxidized in both groups. Summing up those results, endurance exercise could be concluded to be effective in weight control. However, weight loss is thought to be resulted from increase in fat oxidization during exercise unlike the conclusion made from previous studies where weight loss is prominently influenced by energy metabolism during a resting period and increased fat oxidation during post-exercise recovery. All experimental procedures were carried out at the Animal Experiment Research Center of Konkuk University. This study was conducted in accordance with the ethical guidelines of the Konkuk University Institutional Animal Care and Use Committee.

A Novel System with EMG-controlled FES Enhanced Gait Function and Energy Expenditure for Older Adults

  • Jang-hoon Shin;Hye-Kang Park;Joonyoung Jung;Dong-Woo Lee;Hyung cheol Shin;Hwang-Jae Lee;Wan-hee Lee
    • Physical Therapy Rehabilitation Science
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    • 제13권2호
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    • pp.152-162
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    • 2024
  • Objective: This study was conducted to analyze the effect of wearable Electromyography-controlled functional electrical stimulation (EMG-controlled FES) System on Gait Function and cardiopulmonary metabolic efficiency during walking in older adults. Design: Cross-section study Methods: Total 22 older adult participants suitable to selection criteria of this study participated in this study. The EMG-controlled FES System, which functions as a wearable physical activity assist FES system was used. All participations performed randomly assigned two conditions (Non-FES assist [NFA], FES assist [FA]) of walking. In all conditions, spatio-temporal parameters and kinematics and kinetics parameters during walking was collected via 3D motion capture system and 6 minutes walking test (6MWT) and metabolic cost during walking and stairs climbing was collected via a portable metabolic device (COSMED K5, COSMED Srl, Roma, Italy). Results: In Spatio-temporal parameters aspects, The EMG-controlled FES system significantly improved gait functions measurements of older adults with sarcopenia at walking in comparison to the NFA condition (P<0.05). Hip, knee and ankle joint range of motion increased at walking in FA condition compared to the NFA condition (P<0.05). In the FA condition, moment and ground reaction force was changed like normal gait during walking of older adults in comparison to the NFA condition (P<0.05). The EMG-controlled FES system significantly reduced net cardiopulmonary metabolic energy cost, net energy expenditure measurement at stairs climbing (P<0.05). Conclusions: This study demonstrated that EMG-controlled FES is a potentially useful gait-assist system for improving gait function by making joint range of motion and moment properly.

명일엽 가공산물의 대사 에너지 함량 평가 (The Evaluation of Metabolizable Energy of Angelica Keiskei (Angelica utilis Makino) Products)

  • 김은미;최진호;최금부;여익현
    • Journal of Nutrition and Health
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    • 제43권1호
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    • pp.5-11
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    • 2010
  • 본 연구는 명일엽과 그 가공산물의 대사에너지 함량을 분석하기 위해 실시하였다. 명일엽 전초, 명일엽 녹즙, 녹즙박, 발효녹즙 및 녹즙 + 녹즙박 5가지 식품을 기초식이에 30% 첨가하여 실험식이를 제조하였다. 기초식이는 AIN93M을 사용하였다. 실험용 쥐는 실험군당 6마리를 사용하였고, 3일간 실험식이에 적응시킨후 4일간 식이섭취량을 측정하고 분과 뇨를 모두 수거하였다. 수거한 분과 뇨는 bomb calorimeter로 gross energy를 측정하였다. 본 연구결과, 명일엽 가공산물의 대사에너지 함량은 명일엽 1,286.8 kcal/kg, 명일엽 녹즙 1,642.6 kcal/kg, 발효녹즙 2,044.8 kcal/kg, 녹즙박 1,687.5 kacl/kg, 명일엽 녹즙 + 녹즙박 1,763.0 kcal/kg이었다. 수분을 함유한 원물은 각각 193, 82, 102, 270 및 216 kcal/kg이었다. 이를 여러 에너지환산계수를 이용한 에너지가와 비교한 결과 20~60% 차이를 보였다. 특히 원물에서 명일엽은 식품성분표에서는 340 kcal/kg의 열량가를 갖는 것으로 발표되었지만, 동물을 이용한 대사에너지 측정치는 193 kcal/kg으로 76% 낮게 나타났다. 이는 섬유소 함량이 높은 명일엽과 가공 산물들은 실험동물을 이용한 방법이 energy conversion factor로 계산한 수치보다 정확한 대사에너지 함량을 구하기에 더 적합하기 때문으로 판단된다.

Proteomics 분석기반 갈색지방 활성화 및 백색지방의 갈색지방화(browning)조절 연구 (Proteomics studies of brown adipose tissue (BAT) activation and white adipose tissue (WAT) browning)

  • 배광희;김원곤
    • 식품과학과 산업
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    • 제50권1호
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    • pp.26-35
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    • 2017
  • Obesity is a worldwide problem that is associated with metabolic disorders. Obesity is caused by the accumulation of an abnormal amount of body fat in adipose tissue. Adipose tissue is a major metabolic organ, and it has been classified as either white adipose tissue (WAT) or brown adipose tissue (BAT). WAT and BAT are characterized by different anatomical locations, morphological structures, functions, and gene expression patterns. WAT is mainly involved in the storage and mobilization of energy in the form of triglycerides. On the other hand, BAT specializes in dissipating energy as heat through uncoupling protein-1 (UCP-1)-mediated non-shivering thermogenesis. Novel type of brown-like adipocyte within WAT called beige/brite cells was recently discovered, and this transdifferentiation process is referred to as the "browning" or "britening" of WAT. Recently, Brown fat and/or browning of WAT have been highlights as a new therapeutic target for treatment of obesity and its related metabolic disorders. Here, we describe recent advances in the study of BAT and browning of WAT, focusing on proteomic approaches.