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      노화예방을 위한 운동과 마이오카인의 역할 = Role of Myokine and Exercise for the Prevention of Aging

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      https://www.riss.kr/link?id=A103571405

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      다국어 초록 (Multilingual Abstract)

      [PURPOSE] This study reviewed the current trend of the importance of exercise training-related myokine's function for the prevention of aging. [METHODS] On the basis of searching on the recent research results in pubmed and the other internet research...

      [PURPOSE] This study reviewed the current trend of the importance of exercise training-related myokine's function for the prevention of aging. [METHODS] On the basis of searching on the recent research results in pubmed and the other internet research file, we reviewed the recent research output. [RESULTS] Myokine has been regarded an important factor of exercise training and brain growth factor for the prevention of Alzheimier's disease. During exercise the release of anti-inflammatory myokine from contracting skeletal muscle controled the metabolic response, and myostatin, IL-4, IL-6, IL-10, and IL-15 controled skeletal muscle hypertrophy and myogenesis. BDNF and IL-6 promoted the lipid metabolism through AMPK activation. IL-1Ra, IL-10 and sTNF-R inhibited TNF-α as the pro-inflammatory cytokine. IL-15 increased the releasing volume from contracting muscle, and promoted the anabolic factor of muscle growth. IL-7 and IL-8 activated the angiogenesis through the more activation of C-X-C receptor signal transmission. FNDC5/Irisin pathway activated brain cell and BDNF expression through the control of neurogenesis pathway. [CONCLUSIONS] Multiple myokines released from contracting skeletal muscle, and performed the important key factors for skeletal muscle hypertrophy. Therefore exercise training can be suggested the important intervention program for aging prevention and aging-related dysfunction through the delayed sarcopenia. We should try to elucidate the mechanism of myokine's molecular pathway and effects

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      참고문헌 (Reference)

      1 Tamura, Y, "Upregulation of circulating IL-15 by treadmill running in healthy individuals: is IL-15 an endocrine mediator of the beneficial effects of endurance exercise" 58 (58): 211-215, 2011

      2 Keller, C, "Transcriptional activation of the IL-6gene in human contracting skeletal muscle:influence of muscle glycogen content" 15 : 2748-2750, 2001

      3 Snijders, T, "The impact of sarcopenia and exercise training on skeletal muscle satellite cells" 8 : 328-338, 2009

      4 Yeo, N. H, "The effects of different exercise intensity on myokine and angiogenesis factors" 52 : 448-454, 2012

      5 Keller, C, "The effect of exercise, training, and glycogen availability on IL-6 receptor expression in human skeletal muscle" 99 : 2075-2079, 2005

      6 Bek, E. L, "The effect of diabetes on endothelin, interleukin-8 and vascular endothelial growth factor-mediated angiogenesis in rats" 103 (103): 424S-429S, 2002

      7 Ferris, L. T, "The effect of acute exercise on serum brain-derived neurotrophic factor levels and cognitive function" 39 (39): 728-734, 2007

      8 Prokopchuk, O, "Skeletal muscle IL-4, IL-4Ralpha, IL-13 and IL-13Ralpha1 expression and response to strength training" 13 : 67-75, 2007

      9 Harbe, r M. P, "Protein synthesis and the expression of growth-related genes are altered by running in human vastus lateralis and soleus muscles" 296 : R708-R714, 2009

      10 Ostrowski, K, "Physical activity and plasma interleukin-6 in humans: effect of intensity of exercise" 83 : 512-515, 2000

      1 Tamura, Y, "Upregulation of circulating IL-15 by treadmill running in healthy individuals: is IL-15 an endocrine mediator of the beneficial effects of endurance exercise" 58 (58): 211-215, 2011

      2 Keller, C, "Transcriptional activation of the IL-6gene in human contracting skeletal muscle:influence of muscle glycogen content" 15 : 2748-2750, 2001

      3 Snijders, T, "The impact of sarcopenia and exercise training on skeletal muscle satellite cells" 8 : 328-338, 2009

      4 Yeo, N. H, "The effects of different exercise intensity on myokine and angiogenesis factors" 52 : 448-454, 2012

      5 Keller, C, "The effect of exercise, training, and glycogen availability on IL-6 receptor expression in human skeletal muscle" 99 : 2075-2079, 2005

      6 Bek, E. L, "The effect of diabetes on endothelin, interleukin-8 and vascular endothelial growth factor-mediated angiogenesis in rats" 103 (103): 424S-429S, 2002

      7 Ferris, L. T, "The effect of acute exercise on serum brain-derived neurotrophic factor levels and cognitive function" 39 (39): 728-734, 2007

      8 Prokopchuk, O, "Skeletal muscle IL-4, IL-4Ralpha, IL-13 and IL-13Ralpha1 expression and response to strength training" 13 : 67-75, 2007

      9 Harbe, r M. P, "Protein synthesis and the expression of growth-related genes are altered by running in human vastus lateralis and soleus muscles" 296 : R708-R714, 2009

      10 Ostrowski, K, "Physical activity and plasma interleukin-6 in humans: effect of intensity of exercise" 83 : 512-515, 2000

      11 Shan, T, "Myostatin knockout drives browning of white adipose tissue through activating the AMPK-PGC1alpha-Fndc5 pathway in muscle" 27 : 1981-1989, 2013

      12 Pedersen, B. K, "Muscular interleukin-6 and its role as an energy sensor" 44 : 392-396, 2012

      13 Pedersen, B. K, "Muscle-derived interleukin-6: lipolytic anti-inflammatory and immune regulatory effects" 446 : 9-16, 2003

      14 Pedersen, B. K, "Muscle as an endocrine organ: focus on muscle-derived interleukin-6" 88 : 1379-1406, 2008

      15 MacIntyre, D. L, "Markers of inflammation and myofibrillar proteins following eccentric exercise in humans" 84 : 180-186, 2001

      16 Dun, S. L, "Irisin-immunoreactivity in neural and non-neural cells of the rodent" 240 : 155-162, 2013

      17 Fischer, C. P, "Interleukin-6 in acute exercise and training: what is the biological relevance" 12 : 6-33, 2006

      18 Lafreniere, J. F, "Interleukin-4improves the migration of human myogenic precursor cells in vitro and in vivo" 312 : 1127-1141, 2006

      19 Carbo, N, "Interleukin-15 mediates reciprocal regulation of adipose and muscle mass: a potential role in body weight control" 1526 : 17-24, 2001

      20 Henson, D. A, "Influence of carbohydrate on cytokine and phagocytic responses to 2h of rowing" 32 : 1384-1389, 2000

      21 Czlonkowska, A, "Inflammation and gliosis in neurological diseases clinical implications" 231 (231): 78-85, 2011

      22 Kim, J. S, "Impact of resistance loading on myostatin expression and cell cycle regulation in young and older men and women" 288 : E1110-E1119, 2005

      23 Hashizume, M, "IL-6/sIL-6R trans-signalling, but not TNF-alpha induced angiogenesis in a HUVEC and synovial cell co-culture system" 29 : 1449-1454, 2009

      24 Horsley, V, "IL-4 acts as a myoblast recruitment factor during mammalian muscle growth" 113 : 483-494, 2003

      25 Huh, J. Y, "FNDC5 and irisin in humans: I. Predictors of circulating concentrations in serum and plasma and II. mRNA expression and circulating concentrations in response to weight loss and exercise" 61 : 1725-1738, 2012

      26 Lecker, S. H, "Expression of the irisin precursor FNDC5 in skeletal muscle correlates with aerobic exercise performance in patients with heart failure" 5 : 812-818, 2012

      27 Nielsen, A. R, "Expression of interleukin-15 in human skeletal muscle effect of exercise and muscle fibre type composition" 584 : 305-312, 2007

      28 Frydelund-Larsen, L, "Exercise induces interleukin-8receptor (CXCR2) expression in human skeletal muscle" 92 : 233-240, 2007

      29 Wrann, C. D, "Exercise induces hippocampal BDNF through a PGC-1α/FNDC5pathway" 18 : 649-659, 2013

      30 Rasmussen, P, "Evidence for a release of brain-derived neurotrophic factor from the brain during exercise" 94 (94): 1062-1069, 2009

      31 Pedersen, B. K, "Edward F. Adolph Distinguished Lecture: Muscle as an endocrine organ: IL-6 and other myokines" 107 : 1006-1014, 2009

      32 Henningsen, J, "Dynamics of the skeletal muscle secretome during myoblast differentiation" 9 : 2482-2496, 2010

      33 Roubenoff, R, "Cytokines, insulin-like growth factor 1, sarcopenia, and mortality in very old community-dwelling men and women: the Framingham Heart Study" 115 : 429-435, 2003

      34 Chan, M. H, "Cytokine gene expression in human skeletal muscle during concentric contraction: evidence that IL-8, like IL-6, is influenced by glycogen availability" 287 : R322-R327, 2004

      35 Matthews, V. B, "Brainderived neurotrophic factor is produced by skeletal muscle cells in response to contraction and enhances fat oxidation via activation of AMP-activated protein kinase" 52 (52): 1409-1418, 2009

      36 Mandel, A. L, "Brain-derived neurotrophic factor in human saliva: ELISA optimization and biological correlates" 32 (32): 18-30, 2011

      37 Al-Shanti, N, "Beneficial synergistic interactions of TNF-alpha and IL-6 in C2skeletal myoblasts–potential cross-talk with IGF system" 26 : 61-73, 2008

      38 Komulainen, P, "BDNF is a novel marker of cognitive function in ageing women: the DR's EXTRA Study" 90 : 596-603, 2008

      39 Riechman, S. E, "Association of interleukin-15 protein and interleukin-15receptor genetic variation with resistance exercise training responses" 97 (97): 2214-2219, 2004

      40 Nielsen, A. R, "Association between interleukin-15 and obesity: interleukin- 15 as a potential regulator of fat mass" 93 : 4486-4449, 2008

      41 Pekkala, S, "Are skeletal muscle FNDC5 gene expression and irisin release regulated by exercise and related to health" 591 : 5393-5400, 2013

      42 RojasVega, S, "Acute BDNF and cortisol response to low intensity exercise and following ramp incremental exercise to exhaustion in humans" 1121 (1121): 59-65, 2006

      43 Bostrὅm, P, "A PGC1-α-dependent myokine that drives brown-fat-like development of white fat and thermogenesis" 481 : 463-468, 2012

      44 Haugen, F, "-7 is expressed and secreted by human skeletal muscle cells" 298 : C807-C16, 2010

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-31 학술지명변경 한글명 : 운동학 학술지 -> 아시아 운동학 학술지
      외국어명 : The Journal of Kinesiology -> The Asian Journal of Kinesiology
      KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2017-02-09 학술지명변경 외국어명 : The Official Journal of the Korean Academy of Kinesiology -> The Journal of Kinesiology KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2014-09-18 학술지명변경 외국어명 : 미등록 -> The Official Journal of the Korean Academy of Kinesiology KCI등재
      2011-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2010-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2008-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.57 0.57 0.66
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.63 0.67 0.686 0.03
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