Anti-fatigue effect of tormentic acid through alleviating oxidative stress and energy metabolism-modulating property in C2C12 cells and animal models
暂无分享,去创建一个
[1] Hongwu Ji,et al. The anti-fatigue effect of the Auxis thazard oligopeptide via modulation of the AMPK/PGC-1α pathway in mice. , 2022, Food & function.
[2] Yuliang Cheng,et al. Anti-fatigue effect of Lepidium meyenii Walp. (Maca) on preventing mitochondria-mediated muscle damage and oxidative stress in vivo and vitro. , 2021, Food & function.
[3] Hyung‐Min Kim,et al. Blockade of RANKL/RANK signaling pathway by epigallocatechin gallate alleviates mast cell-mediated inflammatory reactions. , 2020, International immunopharmacology.
[4] S. Powers,et al. Exercise-induced oxidative stress: Friend or foe? , 2020, Journal of sport and health science.
[5] Y. Ishigaki,et al. Neuroinflammation, Oxidative Stress, and Neurogenesis in a Mouse Model of Chronic Fatigue Syndrome, and the Treatment with Kampo Medicine. , 2020, Biological & pharmaceutical bulletin.
[6] Mal-Soon Shin,et al. Effects of sildenafil citrate on peripheral fatigue and exercise performance after exhaustive swimming exercise in rats , 2019, Journal of exercise rehabilitation.
[7] Z. Yao,et al. Parthenolide regulates oxidative stress‐induced mitophagy and suppresses apoptosis through p53 signaling pathway in C2C12 myoblasts , 2019, Journal of cellular biochemistry.
[8] Hyung‐Min Kim,et al. An osteoclastogenesis system, the RANKL/RANK signalling pathway, contributes to aggravated allergic inflammation , 2019, British journal of pharmacology.
[9] A. Mika,et al. Effect of Exercise on Fatty Acid Metabolism and Adipokine Secretion in Adipose Tissue , 2019, Front. Physiol..
[10] I. Muraoka,et al. Exercise-Induced Oxidative Stress and the Effects of Antioxidant Intake from a Physiological Viewpoint , 2018, Antioxidants.
[11] Yu-Tang Tung,et al. Kefir Supplementation Modifies Gut Microbiota Composition, Reduces Physical Fatigue, and Improves Exercise Performance in Mice , 2018, Nutrients.
[12] M. Abdelhalim,et al. The protective role of quercetin and arginine on gold nanoparticles induced hepatotoxicity in rats , 2018, International journal of nanomedicine.
[13] B. Lima,et al. Effect of Pulsed Therapeutic Ultrasound and Diosmin on Skeletal Muscle Oxidative Parameters. , 2018, Ultrasound in medicine & biology.
[14] Na‐Ra Han,et al. Leucine and glycine dipeptides of porcine placenta ameliorate physical fatigue through enhancing dopaminergic systems. , 2017, Molecular medicine reports.
[15] Fu-An Chen,et al. Effect of burdock extract on physical performance and physiological fatigue in mice , 2017, The Journal of veterinary medical science.
[16] C. Dimauro,et al. Oxidative stress and food supplementation with antioxidants in therapy dogs. , 2017, Canadian journal of veterinary research = Revue canadienne de recherche veterinaire.
[17] H. Saito,et al. Protective Effects of Tormentic Acid, a Major Component of Suspension Cultures of Eriobotrya japonica Cells, on Acetaminophen-Induced Hepatotoxicity in Mice , 2017, Molecules.
[18] Rick B. Vega,et al. Exercise Inducible Lactate Dehydrogenase B Regulates Mitochondrial Function in Skeletal Muscle* , 2016, The Journal of Biological Chemistry.
[19] W. Chiu,et al. Capsaicin Supplementation Reduces Physical Fatigue and Improves Exercise Performance in Mice , 2016, Nutrients.
[20] Ying Zhang,et al. Tormentic acid inhibits H2O2-induced oxidative stress and inflammation in rat vascular smooth muscle cells via inhibition of the NF-κB signaling pathway , 2016, Molecular medicine reports.
[21] Chang-Ju Kim,et al. Effect of fermented porcine placenta on physical fatigue in mice , 2016, Experimental biology and medicine.
[22] M. Hargreaves. Exercise, muscle, and CHO metabolism , 2015, Scandinavian journal of medicine & science in sports.
[23] H. Kim,et al. Anti-fatigue effect of Myelophil in a chronic forced exercise mouse model. , 2015, European journal of pharmacology.
[24] W. Chiu,et al. Effect of Curcumin Supplementation on Physiological Fatigue and Physical Performance in Mice , 2015, Nutrients.
[25] Yu-Kai Chang,et al. Whey Protein Improves Exercise Performance and Biochemical Profiles in Trained Mice , 2014, Medicine and science in sports and exercise.
[26] C. Liao,et al. Resveratrol Protects against Physical Fatigue and Improves Exercise Performance in Mice , 2013, Molecules.
[27] Chi-An W. Emhoff,et al. Gluconeogenesis and hepatic glycogenolysis during exercise at the lactate threshold , 2013, Journal of applied physiology.
[28] F. Martiniuk,et al. The Effect of Intraoperative Infusion of Dexmedetomidine on the Quality of Recovery After Major Spinal Surgery , 2013, Journal of neurosurgical anesthesiology.
[29] Julien S. Baker,et al. Creatine-Kinase- and Exercise-Related Muscle Damage Implications for Muscle Performance and Recovery , 2012, Journal of nutrition and metabolism.
[30] A. M. Carroll,et al. H55N polymorphism as a likely cause of variation in citrate synthase activity of mouse skeletal muscle. , 2010, Physiological genomics.
[31] Hua Zheng,et al. Glabridin from Chinese herb licorice inhibits fatigue in mice. , 2010, African journal of traditional, complementary, and alternative medicines : AJTCAM.
[32] E. Schiff,et al. Clinical trial: the efficacy and safety of oral PF‐03491390, a pancaspase inhibitor – a randomized placebo‐controlled study in patients with chronic hepatitis C , 2010, Alimentary pharmacology & therapeutics.
[33] Z. Yao,et al. The decapeptide CMS001 enhances swimming endurance in mice , 2008, Peptides.
[34] C. Harris,et al. Inflammation and cancer: An ancient link with novel potentials , 2007, International journal of cancer.
[35] T. O’Halloran,et al. Activation of superoxide dismutases: putting the metal to the pedal. , 2006, Biochimica et biophysica acta.
[36] Y. Ho,et al. Mice Lacking Catalase Develop Normally but Show Differential Sensitivity to Oxidant Tissue Injury* , 2004, Journal of Biological Chemistry.
[37] Kenji Watanabe,et al. Triterpene Acids from the Leaves of Perilla frutescens and Their Anti-inflammatory and Antitumor-promoting Effects , 2004, Bioscience, biotechnology, and biochemistry.
[38] P. Contu,et al. Quantitative evaluation of oxidative stress, chronic inflammatory indices and leptin in cancer patients: Correlation with stage and performance status , 2002, International journal of cancer.
[39] B. Fulkerson,et al. Generation of reactive oxygen species after exhaustive aerobic and isometric exercise. , 2000, Medicine and science in sports and exercise.
[40] L. Moldawer,et al. Revisiting the role of tumor necrosis factor alpha and the response to surgical injury and inflammation. , 1998, Archives of surgery.
[41] D. Costill,et al. Testosterone, Cortisol, and Creatine Kinase Levels in Male Distance Runners During Reduced Training , 1990, International journal of sports medicine.
[42] P. K. Smith,et al. Measurement of protein using bicinchoninic acid. , 1985, Analytical biochemistry.
[43] W. Ament,et al. Exercise and Fatigue , 2009, Sports medicine.