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    KCI등재 SCOPUS SCIE

    Sasa quelpaertensis leaf extract mitigates fatigue and regulates the transcriptome profile in mice

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    https://www.riss.kr/link?id=A106104801

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Introduction It has been reported that various plant species may enhance the elimination of fatigue-related metabolites.
    However, relatively few studies have directly addressed the potential anti-fatigue effects.
    Objective The objective of this study was to investigate the anti-fatigue potential of a hot water extract of Sasa quelpaertensis Nakai leaf (SQH) in male ICR mice.
    Methods The animals were divided into three groups. The normal control (NC) group was administered saline without exercise every day for 7 days. The exercise control (EC) and exercise with SQH (ES) groups were administered saline and SQH (50 mg/kg of body weight), respectively, every day for 7 days and underwent swimming exercise. RNA sequencing technology was used to analyze the transcriptome profiles of muscle.
    Results Swimming times were prolonged in the ES group compared with the EC group. The ES group had higher blood glucose and lower blood lactate levels, and higher muscular glycogen and lower muscular lactate levels, compared with the EC group. The groups did not differ in histopathological parameters of the muscle and liver, but muscle cell sizes were smaller in the EC group than in the ES and NC groups. RNA sequencing analysis revealed that SQH administration regulated genes associated with energy-generating metabolic pathways in skeletal muscle.
    Conclusion These results suggest that SQH exerts anti-fatigue properties by balancing various biological systems and helping maintain the basic harmonious pattern of the body.
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    Introduction It has been reported that various plant species may enhance the elimination of fatigue-related metabolites. However, relatively few studies have directly addressed the potential anti-fatigue effects. Objective The objective of this stud...

    Introduction It has been reported that various plant species may enhance the elimination of fatigue-related metabolites.
    However, relatively few studies have directly addressed the potential anti-fatigue effects.
    Objective The objective of this study was to investigate the anti-fatigue potential of a hot water extract of Sasa quelpaertensis Nakai leaf (SQH) in male ICR mice.
    Methods The animals were divided into three groups. The normal control (NC) group was administered saline without exercise every day for 7 days. The exercise control (EC) and exercise with SQH (ES) groups were administered saline and SQH (50 mg/kg of body weight), respectively, every day for 7 days and underwent swimming exercise. RNA sequencing technology was used to analyze the transcriptome profiles of muscle.
    Results Swimming times were prolonged in the ES group compared with the EC group. The ES group had higher blood glucose and lower blood lactate levels, and higher muscular glycogen and lower muscular lactate levels, compared with the EC group. The groups did not differ in histopathological parameters of the muscle and liver, but muscle cell sizes were smaller in the EC group than in the ES and NC groups. RNA sequencing analysis revealed that SQH administration regulated genes associated with energy-generating metabolic pathways in skeletal muscle.
    Conclusion These results suggest that SQH exerts anti-fatigue properties by balancing various biological systems and helping maintain the basic harmonious pattern of the body.

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    참고문헌 (Reference)

    1 이주엽, "식물화합물 다량 함유 제주조릿대 잎 추출물의 제조와 특성" 한국생명과학회 26 (26): 1330-1335, 2016

    2 Jagoe RT, "What do we really know about the ubiquitin-proteasome pathway in muscle atrophy?" 4 : 183-190, 2001

    3 Jiang X, "The antifatigue activities of Tuber melanosporum in a mouse model" 15 : 3066-3073, 2018

    4 Suzuki S, "Studies on the anti-tumor activity of polysaccharides. I. Isolation of hemicelluloses from Yakushima-bamboo and their growth inhibitory activities against sarcoma-180 solid tumor" 16 : 2032-2039, 1968

    5 Okabe S, "Stimulatory effect of the water extract of bamboo grass (Folin solution) on gastric acid secretion in pylorus-ligated rats" 25 : 608-609, 1975

    6 Glass DJ, "Signalling pathways that mediate skeletal muscle hypertrophy and atrophy" 5 : 87-90, 2003

    7 Kim KM, "Sasa quelpaertensis leaf extract suppresses dextran sulfate sodium–induced colitis in mice by inhibiting the proinflammatory mediators and mitogen-activated protein kinase phosphorylation" 34 : 894-905, 2014

    8 You Y, "Sasa borealis extract efficiently enhanced swimming capacity by improving energy metabolism and the antioxidant defense system in mice" 61 : 488-496, 2015

    9 Hulmi JJ, "Resistance exercise with whey protein ingestion affects mTOR signaling pathway and myostatin in men" 106 : 1720-1729, 2009

    10 Belluardo N, "Neuromuscular junction disassembly and muscle fatigue in mice lacking neurotrophin-4" 18 : 56-67, 2001

    1 이주엽, "식물화합물 다량 함유 제주조릿대 잎 추출물의 제조와 특성" 한국생명과학회 26 (26): 1330-1335, 2016

    2 Jagoe RT, "What do we really know about the ubiquitin-proteasome pathway in muscle atrophy?" 4 : 183-190, 2001

    3 Jiang X, "The antifatigue activities of Tuber melanosporum in a mouse model" 15 : 3066-3073, 2018

    4 Suzuki S, "Studies on the anti-tumor activity of polysaccharides. I. Isolation of hemicelluloses from Yakushima-bamboo and their growth inhibitory activities against sarcoma-180 solid tumor" 16 : 2032-2039, 1968

    5 Okabe S, "Stimulatory effect of the water extract of bamboo grass (Folin solution) on gastric acid secretion in pylorus-ligated rats" 25 : 608-609, 1975

    6 Glass DJ, "Signalling pathways that mediate skeletal muscle hypertrophy and atrophy" 5 : 87-90, 2003

    7 Kim KM, "Sasa quelpaertensis leaf extract suppresses dextran sulfate sodium–induced colitis in mice by inhibiting the proinflammatory mediators and mitogen-activated protein kinase phosphorylation" 34 : 894-905, 2014

    8 You Y, "Sasa borealis extract efficiently enhanced swimming capacity by improving energy metabolism and the antioxidant defense system in mice" 61 : 488-496, 2015

    9 Hulmi JJ, "Resistance exercise with whey protein ingestion affects mTOR signaling pathway and myostatin in men" 106 : 1720-1729, 2009

    10 Belluardo N, "Neuromuscular junction disassembly and muscle fatigue in mice lacking neurotrophin-4" 18 : 56-67, 2001

    11 Dohm GL, "Influence of fasting on glycogen depletion in rats during exercise" 55 : 830-833, 1983

    12 Winder WW, "Inactivation of acetyl-CoA carboxylase and activation of AMP-activated protein kinase in muscle during exercise" 270 : E299-E304, 1996

    13 Langmead B, "Fast gapped-read alignment with Bowtie 2" 9 : 357-359, 2012

    14 Tanaka M, "Establishment and assessment of a rat model of fatigue" 352 : 159-162, 2003

    15 Yang Q, "Effects of macamides on endurance capacity and anti-fatigue properties in prolonged swimming mice" 54 : 827-834, 2016

    16 Hsiao CY, "Effects of Antrodia camphorata and Panax ginseng supplementation on anti-fatigue properties in mice" 80 : 284-291, 2018

    17 Gentleman RC, "Bioconductor: open software development for computational biology and bioinformatics" 45 : R80-, 2004

    18 Quinlan AR, "BEDTools: a flexible suite of utilities for comparing genomic features" 26 : 841-842, 2010

    19 Sun S, "Antioxidant and anti-fatigue activities of egg white peptides prepared by pepsin digestion" 94 : 3195-3200, 2014

    20 Kurokawa T, "Antioxidant activity of a novel extract from bamboo grass (AHSS) against ischemia-reperfusion injury in rat small intestine" 29 : 2301-2303, 2006

    21 Shao JT, "Antifatigue effects of Gracilaria eucheumoides in mice" 6 : 5327-5337, 2013

    22 Li Q, "Antifatigue activity of liquid cultured tricholoma matsutake mycelium partiall via regulation of antioxidant pathway in mouse" 2015 : 563245-, 2015

    23 Kang SI, "Anti-obesity properties of a Sasa quelpaertensis extract in high-fat diet-induced obese mice" 76 : 755-761, 2012

    24 Joon-Ho Hwang, "Anti-inflammatory Effect of the Hot Water Extract from Sasa quelpaertensis Leaves" 한국식품과학회 16 (16): 728-733, 2007

    25 Jin HM, "Anti-fatigue properties of tartary buckwheat extracts in mice" 12 : 4770-4780, 2011

    26 Zhao YQ, "Anti-fatigue effect by peptide fraction from protein hydrolysate of croceine croaker(Psedosciana crocea)swim bladder through inhibiting the oxidative reactions including DNA damage" 14 : 221-, 2016

    27 정원석, "Anti-fatigue Effect of Fermented Deer Velvet Antler Extract in Sprague-Dawley Rats" 한방재활의학과학회 22 (22): 11-22, 2012

    28 Yeh TS, "Angelica sinensis promotes myotube hypertrophy through the PI3K/Akt/mTOR pathway" 14 : 144-, 2014

    29 Yeh TS, "Angelica sinensis improves exercise performance and protects against physical fatigue in trained mice" 19 : 3926-3939, 2014

    30 DeVol DL, "Activation of insulin-like growth factor gene expression during work-induced skeletal muscle growth" 259 : E89-E95, 1990

    31 Hardie DG, "AMPK: a key sensor of fuel and energy status in skeletal muscle" 21 : 48-60, 2006

    32 Yoon SA, "-Coumaric acid modulates glucose and lipid metabolism via AMP-activated protein kinase in L6 skeletal muscle cells" 432 : 553-557, 2013

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2015-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2012-05-07 학술지명변경 한글명 : 한국유전학회지 -> Genes & Genomics KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-04-14 학술지명변경 외국어명 : Korean Journal of Genetics -> Genes and Genomics KCI등재
    2007-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2004-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2003-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2002-01-01 등재 등재후보학술지 유지 (등재후보1차) KCI등재후보
    1999-07-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.51 0.12 0.38
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.32 0.27 0.258 0.02
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