Relación entre el estrés oxidativo y la pérdida de masa muscular en la posmenopausia temprana: estudio exploratorio
Tài liệu tham khảo
Broekmans, 2009, Ovarian aging: mechanisms and clinical consequences, Endocrin Rev, 30, 465, 10.1210/er.2009-0006
Soules, 2001, Executive summary: Stages of Reproductive Aging Workshop (STRAW) Park City, Utah, July, 2001, Menopause, 8, 402, 10.1097/00042192-200111000-00004
Escobar, 2000, Rol de las hormonas ováricas en la obesidad, Rev Endocrinol Nutr, 8, 14
Cruz-Jentoft, 2010, Sarcopenia: consenso Europeo sobre su definición y diagnóstico. Informe del Grupo Europeo de trabajo sobre la sarcopenia en personas de edad avanzada, Age Ageing, 39, 412, 10.1093/ageing/afq034
Ali, 2014, cachexia and aging: diagnosis, mechanisms and therapeutic options – A mini-review, Gerontology, 60, 294, 10.1159/000356760
Maltais, 2009, Changes in muscle mass and strength after menopause, J Musculoskelet Neuronal Interact, 9, 186
Meng, 2010, Oxidative stress, molecular inflammation and sarcopenia, Int J Mol Sci, 11, 1509, 10.3390/ijms11041509
Harman, 1992, Free radical theory of aging, Mutat Res, 275, 257, 10.1016/0921-8734(92)90030-S
Sánchez-Rodríguez, 2012, Menopause as a risk factor for oxidative stress, Menopause, 19, 361, 10.1097/gme.0b013e318229977d
Kumar, 2010, Role of estrogen receptors in pro-oxidative and anti-oxidative actions of estrogens: A perspective, Biochim Biophys Acta, 1800, 1127, 10.1016/j.bbagen.2010.04.011
Buonocore, 2011, Oxidative system in aged skeletal muscle, Muscles Ligaments Tendons J, 1, 85
Blümel, 2013, Menopause could be involved in the pathogenesis of muscle and joint aches in mid-aged women, Maturitas, 75, 94, 10.1016/j.maturitas.2013.02.012
Cruz-Jentoft, 2014, Prevalence of and interventions for sarcopenia in ageing adults: a systematic review. Report of the International Sarcopenia Initiative (EWGSOP and IWGS), Age Ageing, 43, 748, 10.1093/ageing/afu115
Powers, 2011, Mechanistic links between oxidative stress and disuse muscle atrophy, Antioxid Redox Signal, 15, 2519, 10.1089/ars.2011.3973
Sullivan-Gunn, 2013, Elevated hydrogen peroxide and decreased catalase and glutathione peroxidase protection are associated with aging sarcopenia, BMC Geriatrics, 13, 104, 10.1186/1471-2318-13-104
Janssen, 2004, Skeletal muscle cutpoints associated with elevated physical disability risk in older men and women, Am J Epidemiol, 159, 413, 10.1093/aje/kwh058
Sun, 2003, Development of bioelectrical impedance analysis prediction equations for body composition with the use of a multicomponent model for use in epidemiologic surveys, Am J Clin Nutr, 77, 331, 10.1093/ajcn/77.2.331
Sánchez-Rodríguez, 1998, Valores de referencia de poblaciones senecta y adulta de la ciudad de México. Parámetros bioquímicos y hematológicos, Acta Bioquim Clin Latinoam, 32, 812
Jentzsch, 1996, Improved analysis of malondialdehyde in human body fluids, Free Radic Biol Med, 20, 251, 10.1016/0891-5849(95)02043-8
Miller, 1998, Nonvitamin plasma antioxidants, 285
Flegal, 2010, Prevalence and trends in obesity among US adults, 1999-2008, JAMA, 303, 235, 10.1001/jama.2009.2014
Villaverde-Gutiérrez, 2015, Overweight obesity and cardiovascular risk in menopausal transition, Nutr Hosp, 32, 1603
Janssen, 2005, Linking age-related changes in skeletal muscle mass and composition with metabolism and disease, J Nutr Health Aging, 9, 408
Von Haehling, 2010, An overview of sarcopenia: facts and numbers on prevalence and clinical impact, J Cachexia Sarcopenia Muscle, 1, 129, 10.1007/s13539-010-0014-2
Baumgartner, 1998, Epidemiology of sarcopenia among the elderly in New Mexico, Am J Epidemiol, 147, 755, 10.1093/oxfordjournals.aje.a009520
Cheng, 2014, A cross-sectional study of loss of muscle mass corresponding to sarcopenia in healthy Chinese men and women: reference values, prevalence, and association with bone mass, J Bone Miner Metab, 32, 78, 10.1007/s00774-013-0468-3
Meng, 2010, Oxidative stress, molecular inflammation and sarcopenia, Int J Mol Sci, 11, 1509, 10.3390/ijms11041509
Pansarasa, 2000, Age and sex differences in human skeletal muscle: role of reactive oxygen species, Free Rad Res, 33, 287, 10.1080/10715760000301451
Fanó, 2001, Age and sex influence on oxidative damage and functional status in human skeletal muscle, J Muscle Res Cell Motility, 22, 345, 10.1023/A:1013122805060
Doria, 2012, Relationship between human aging muscle and oxidative system pathway, Oxid Med Cell Longev, 2012, 13 pages, 10.1155/2012/830257
Mason, 2016, Muscle redox signaling pathways in exercise. Role of antioxidants, Free Radic Biol Med, 98, 24, 10.1016/j.freeradbiomed.2016.02.022
Powers, 2016, Redox control of skeletal muscle atrophy, Free Radic Biol Med, 98, 208, 10.1016/j.freeradbiomed.2016.02.021
Macchi, 2008, Higher circulating levels of uric acid are prospectively associated with better muscle function in older persons, Mech Ageing Dev, 129, 522, 10.1016/j.mad.2008.04.008
Dong, 2016, Elevated serum uric acid is associated with greater bone mineral density and skeletal muscle mass in middle-aged and older adults, Plos One, 11, e0154692, 10.1371/journal.pone.0154692
Kawamoto, 2016, Serum uric acid is positively associated with handgrip strength among Japanese community-dwelling elderly women, Plos One, 11, e0151044, 10.1371/journal.pone.0151044