共 44 条
- [1] Avila G., Disturbed Ca2+ Homeostasis in Muscle-Wasting Disorders, Adv Exp Med Biol, 1088, pp. 307-326, (2018)
- [2] Zampieri S., Mammucari C., Romanello V., Et al., Physical exercise in aging human skeletal muscle increases mitochondrial calcium uniporter expression levels and affects mitochondria dynamics, Physiological Reports, 4, (2016)
- [3] Prokopchuk O., Liu Y., Wang L., Et al., Skeletal muscle IL-4, IL-4Ralpha, IL-13 and IL-13Ralpha1 expression and response to strength training, Exerc Immunol Rev, 13, pp. 67-75, (2007)
- [4] Panagiotakos D.B., Pitsavos C., Chrysohoou C., Et al., The associations between leisure-time physical activity and inflammatory and coagulation markers related to cardiovascular disease: the ATTICA Study, Preventive Medicine, 40, pp. 432-437, (2005)
- [5] De Mario A., Gherardi G., Rizzuto R., Et al., Skeletal muscle mitochondria in health and disease, Cell Calcium, 94, (2021)
- [6] Freyssenet D., Berthon P., Denis C., Mitochondrial biogenesis in skeletal muscle in response to endurance exercises, Arch Physiol Biochem, 104, pp. 129-141, (1996)
- [7] Bouzid M.A., Filaire E., Matran R., Et al., Lifelong Voluntary Exercise Modulates Age-Related Changes in Oxidative Stress, Int J Sports Med, 39, pp. 21-28, (2018)
- [8] Daussin F.N., Zoll J., Ponsot E., Et al., Training at high exercise intensity promotes qualitative adaptations of mitochondrial function in human skeletal muscle, J Appl Physiol (1985), 104, pp. 1436-1441, (2008)
- [9] Abu-Baker A., Messaed C., Laganiere J., Et al., Involvement of the ubiquitinproteasome pathway and molecular chaperones in oculopharyngeal muscular dystrophy, Hum Mol Genet, 12, pp. 2609-2623, (2003)
- [10] Afroze D., Kumar A., ER stress in skeletal muscle remodeling and myopathies, FEBS J, 286, pp. 379-398, (2019)