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      KCI등재 SCOPUS

      단기간의 지구성 운동 또는 리튬 처치가 고지방식 유도 비만쥐의 대사증후군에 미치는 영향. = Effects of Lithium Chloride and/or Endurance Exercise Treatment on The Metabolic Syndrome of High Fat Induced Obese Rats During 4 Weeks

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      https://www.riss.kr/link?id=A106467218

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      다국어 초록 (Multilingual Abstract)

      PURPOSE: Investigate the effects of lithium chloride and/or endurance exercise on metabolic syndrome in high fat-induced obese rats. METHODS: 10-week-old male Sprague Dawley rats (n=45) were subjected to a high-fat diet for 8 weeks followed by lithiu...

      PURPOSE: Investigate the effects of lithium chloride and/or endurance exercise on metabolic syndrome in high fat-induced obese rats.
      METHODS: 10-week-old male Sprague Dawley rats (n=45) were subjected to a high-fat diet for 8 weeks followed by lithium (2 mg/kg Lithium chloride) and/or endurance exercise (40% VO2max, 12 m/min, slop 0%, 3 d/week) for 4 weeks.
      RESULTS: Lithium and endurance exercise improved blood glucose and insulin response in the oral glucose tolerance test compared to the FC group, but there was no additional effect according to the combined treatment. Serum levels of AST and ALT and urinary components were similar to those of CC group.
      CONCLUSIONS: The short-term lithium or exercise treatment significantly improved metabolic syndrome in high fat diet induced obese rats and did not show any blood or urinary toxicity, but there was no additive effect on metabolic syndrome of combined treatments.

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      참고문헌 (Reference)

      1 임은미, "저항성 운동이 OLETF 쥐 시상하부 Leptin receptor (Ob-R), GLUT2 mRNA 및 골격근 GLUT4 mRNA 발현에 미치는 영향" 한국운동생리학회 27 (27): 303-309, 2018

      2 신윤아, "비만인의 체중감량을 위한 운동중재 방법에 대한 고찰" 한국운동생리학회 25 (25): 219-229, 2016

      3 Codella R, "Why should people with type 1 diabetes exercise regularly?" 54 (54): 615-630, 2017

      4 Atmaca M, "Weight gain and serum leptin levels in patients on lithium treatment" 46 (46): 67-69, 2002

      5 Henriksen EJ, "The high-fat-fed lean Zucker rat: a spontaneous isocaloric model of fat-induced insulin resistance associated with muscle GSK-3 overactivity" 294 (294): R1813-R1821, 2008

      6 Scott JT, "The effect of low levels of lithium chloride in the diet of the laying hen" 52 (52): 2336-2337, 1973

      7 Collins N, "Standards of lithium monitoring in mental health Ttrusts in the UK" 10 : 80-, 2010

      8 Hayashi T, "Skeletal muscle contractile activity in vitro stimulates mitogen-activated protein kinase signaling" 277 (277): C701-C707, 1999

      9 Nyfeler F, "Short-term stimulation of net glycogen production by insulin in rat hepatocytes" 675 (675): 17-23, 1981

      10 Coşkunol H, "Renal sideeffects of long-term lithium treatment" 43 (43): 5-10, 1997

      1 임은미, "저항성 운동이 OLETF 쥐 시상하부 Leptin receptor (Ob-R), GLUT2 mRNA 및 골격근 GLUT4 mRNA 발현에 미치는 영향" 한국운동생리학회 27 (27): 303-309, 2018

      2 신윤아, "비만인의 체중감량을 위한 운동중재 방법에 대한 고찰" 한국운동생리학회 25 (25): 219-229, 2016

      3 Codella R, "Why should people with type 1 diabetes exercise regularly?" 54 (54): 615-630, 2017

      4 Atmaca M, "Weight gain and serum leptin levels in patients on lithium treatment" 46 (46): 67-69, 2002

      5 Henriksen EJ, "The high-fat-fed lean Zucker rat: a spontaneous isocaloric model of fat-induced insulin resistance associated with muscle GSK-3 overactivity" 294 (294): R1813-R1821, 2008

      6 Scott JT, "The effect of low levels of lithium chloride in the diet of the laying hen" 52 (52): 2336-2337, 1973

      7 Collins N, "Standards of lithium monitoring in mental health Ttrusts in the UK" 10 : 80-, 2010

      8 Hayashi T, "Skeletal muscle contractile activity in vitro stimulates mitogen-activated protein kinase signaling" 277 (277): C701-C707, 1999

      9 Nyfeler F, "Short-term stimulation of net glycogen production by insulin in rat hepatocytes" 675 (675): 17-23, 1981

      10 Coşkunol H, "Renal sideeffects of long-term lithium treatment" 43 (43): 5-10, 1997

      11 Khandelwal SK, "Renal function in long term lithium prophylaxis" 77 : 107-111, 1983

      12 Hullin RP, "Renal function after long-term treatment with lithium" 1 (1): 1457-1459, 1979

      13 Zhong-Ze Han, "Reference Data of the Main Physiological Parameters in Control Sprague-Dawley Rats from Pre-clinical Toxicity Studies" 한국실험동물학회 26 (26): 153-164, 2010

      14 Antonescu CN, "Reduction of insulin-stimulated glucose uptake in L6 myotubes by the protein kinase inhibitor SB203580 is independent of p38MAPK activity" 146 (146): 3773-3781, 2005

      15 Esteves JV, "MicroRNAs-Mediated Regulation of Skeletal Muscle GLUT4 Expression and Translocation in Insulin Resistance" 2017 : 7267910-, 2017

      16 Stephens FB, "Metabolic and molecular changes associated with the increased skeletal muscle insulin action 24-48 h after exercise in young and old humans" 46 (46): 111-118, 2018

      17 Paul R, "Meta-analysis of the effects of lithium usage on serum creatinine levels" 24 (24): 1425-1431, 2010

      18 Clément-Lacroix P, "Lrp5-independent activation of Wnt signaling by lithium chloride increases bone formation and bone mass in mice" 102 (102): 17406-17411, 2005

      19 Aprahamian I, "Longterm, low-dose lithium treatment does not impair renal function in the elderly: a 2-year randomized, placebo-controlled trial followed by single-blind extension" 75 (75): e672-e678, 2014

      20 Grandjean EM, "Lithium: updated human knowledge using an evidence-based approach. Part II: Clinical pharmacology and therapeutic monitoring" 23 (23): 331-349, 2009

      21 Trepiccione F, "Lithium-induced nephrogenic diabetes insipidus: new clinical and experimental findings" 23 (23): S43-S48, 2010

      22 Bichet DG, "Lithium, cyclic AMP signaling, A-kinase anchoring proteins, and aquaporin-2" 17 (17): 920-922, 2006

      23 McKnight RF, "Lithium toxicity profile : a systematic review and meta-analysis" 379 (379): 721-728, 2012

      24 Simhandl C, "Lithium and bipolar disorder-a renaissance?" 21 (21): 121-130, 2007

      25 King PA, "Insulin resistance in obese Zucker rat(fa/fa)skeletal muscle is associated with a failure of glucose transporter translocation" 90 (90): 1568-1575, 1992

      26 Bhattacharya G, "Influence of Li+ on glucose metabolism in part and rabbits" 93 : 644-646, 1964

      27 Kim JY, "High-fat diet-induced muscle insulin resistance: relationship to visceral fat mass" 279 (279): R2057-R2065, 2000

      28 Etgen GJ Jr, "Glucose transport and cell surface GLUT-4 protein in skeletal muscle of the obese Zucker rat" 271 (271): E294-E301, 1996

      29 Dela F, "Glucose clearance in aged trained skeletal muscle during maximal insulin with superimposed exercise" 87 (87): 2059-2067, 1999

      30 King PA, "Exercise, unlike insulin, promotes glucose transporter translocation in obese Zucker rat muscle" 265 (265): R447-R452, 1993

      31 Goodyear LJ, "Exercise, glucose transport, and insulin sensitivity" 49 : 235-261, 1998

      32 Hayashi T, "Exercise regulation of glucose transport in skeletal muscle" 273 : E1039-E1051, 1997

      33 Ren JM, "Evidence from transgenic mice that glucose transport is rate-limiting for glycogen deposition and glycolysis in skeletal muscle" 268 (268): 16113-16115, 1993

      34 Harrell NB, "Essential role of p38 MAPK for activation of skeletal muscle glucose transport by lithium" 113 (113): 221-227, 2007

      35 Ribé D, "Endofacial competitive inhibition of glucose transporter-4 intrinsic activity by the mitogen-activated protein kinase inhibitor SB203580" 146 (146): 1713-1717, 2005

      36 Giusti CF, "Endocrine disturbances related to the use of lithium" 56 (56): 153-158, 2012

      37 Turan T, "Effects of shortand long-term lithium treatment on kidney functioning in patients with bipolar mood disorder" 26 (26): 561-565, 2002

      38 Gelenberg AJ, "Effects of lithium on the kidney" 75 (75): 29-34, 1987

      39 Bosch F, "Effects of lithium ions on glycogen synthase and phosphorylase in rat hepatocytes" 261 (261): 16927-16931, 1986

      40 Tang XY, "Effects of exercise of different intensities on the angiogenesis, infarct healing, and function of the left ventricle in postmyocardial infarction rats" 22 (22): 497-506, 2011

      41 Goodyear LJ, "Effects of contractile activity on tyrosine phosphoproteins and phosphatidylinositol 3-kinase activity in rat skeletal muscle" 268 : E987-E995, 1995

      42 Voss C, "Effect of lithium on fat, protein and water content in rats" 37 (37): 1243-1246, 1978

      43 Kusalic M, "Effect of lithium maintenance therapy on thyroid and parathyroid function" 24 (24): 227-233, 1999

      44 Treadway JL, "Effect of exercise on insulin receptor binding and kinase activity in skeletal muscle" 256 : E138-E144, 1989

      45 Harvey BM, "Effect of daily lithium chloride administration on bone mass and strength in growing broiler chickens" 94 (94): 296-301, 2015

      46 Jung S, "Effect of Lithium on the Mechanism of Glucose Transport in Skeletal Muscles" 63 (63): 365-371, 2017

      47 Neeland IJ, "Dysfunctional adiposity and the risk of prediabetes and type 2 diabetes in obese adults" 308 (308): 1150-1159, 2012

      48 Korean Diabetes Association, "Diabetes Fact Sheet in Korea"

      49 Wander PL, "Change in Visceral Adiposity Independently Predicts a Greater Risk of Developing Type 2 Diabetes Over 10 Years in Japanese Americans" 36 (36): 289-293, 2013

      50 Robben JH, "Cell biological aspects of the vasopressin type-2 receptor and aquaporin 2 water channel in nephrogenic diabetes insipidus" 291 (291): F257-F270, 2006

      51 Colt EW, "Body composition in affective disorder before, during, and after lithium carbonate therapy" 39 (39): 577-581, 1982

      52 Philipsen A, "Associations between ultrasound measures of abdominal fat distribution and indices of glucose metabolism in a population at high risk of type 2diabetes: the ADDITION-PRO study" 10 (10): e0123062-, 2015

      53 Koltai E, "Age-associated declines in mitochondrial biogenesis and protein quality control factors are minimized by exercise training. American journal of physiology" 303 (303): R127-R134, 2012

      54 Haugaard ES, "Actions of lithium ions and insulin on glucose utilization, glycogen synthesis and glycogen synthase in the isolated rat diaphragm" 23 (23): 1675-1685, 1974

      55 Somwar R, "A dominant-negative p38 MAPK mutant and novel selective inhibitors of p38MAPK reduce insulin-stimulated glucose uptake in 3T3-L1 adipocytes without affecting GLUT4 translocation" 277 (277): 50386-50395, 2002

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-03-21 학회명변경 한글명 : 한국운동과학회 -> 한국운동생리학회
      영문명 : Korea Exercise Science Academy -> Korean Society of Exercise Physiology
      KCI등재
      2005-03-21 학회명변경 한글명 : 한국운동과학회 -> 한국운동생리학회
      영문명 : Korea Exercise Science Academy -> Korean Society of Exercise Physiology
      KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.76 0.76 0.67
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.62 0.71 0.674 0.03
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