Skeletal muscle wasting in cachexia and sarcopenia: molecular pathophysiology and impact of exercise training

被引:314
作者
Bowen, T. Scott [1 ]
Schuler, Gerhard [1 ]
Adams, Volker [1 ]
机构
[1] Univ Leipzig, Dept Cardiol, Heart Ctr Leipzig, D-04289 Leipzig, Germany
关键词
Muscle wasting; Sarcopenia; Cachexia; Exercise training; Molecular analysis; CHRONIC HEART-FAILURE; GROWTH-FACTOR-I; UBIQUITIN-PROTEASOME PATHWAY; LEFT-VENTRICULAR DYSFUNCTION; MITOCHONDRIAL-DNA-DELETION; AGE-RELATED-CHANGES; CELL SELF-RENEWAL; CANCER CACHEXIA; PROTEIN BREAKDOWN; GENE-EXPRESSION;
D O I
10.1002/jcsm.12043
中图分类号
R592 [老年病学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 100203 ;
摘要
Skeletal muscle provides a fundamental basis for human function, enabling locomotion and respiration. Transmission of external stimuli to intracellular effector proteins via signalling pathways is a highly regulated and controlled process that determines muscle mass by balancing protein synthesis and protein degradation. An impaired balance between protein synthesis and breakdown leads to the development of specific myopathies. Sarcopenia and cachexia represent two distinct muscle wasting diseases characterized by inflammation and oxidative stress, where specific regulating molecules associated with wasting are either activated (e.g. members of the ubiquitin-proteasome system and myostatin) or repressed (e.g. insulin-like growth factor 1 and PGC-1). At present, no therapeutic interventions are established to successfully treat muscle wasting in sarcopenia and cachexia. Exercise training, however, represents an intervention that can attenuate or even reverse the process of muscle wasting, by exerting anti-inflammatory and anti-oxidative effects that are able to attenuate signalling pathways associated with protein degradation and activate molecules associated with protein synthesis. This review will therefore discuss the molecular mechanisms associated with the pathology of muscle wasting in both sarcopenia and cachexia, as well as highlighting the intracellular effects of exercise training in attenuating the debilitating loss of muscle mass in these specific conditions.
引用
收藏
页码:197 / 207
页数:11
相关论文
共 150 条
[1]   Cancer cachexia is regulated by selective targeting of skeletal muscle gene products [J].
Acharyya, S ;
Ladner, KJ ;
Nelsen, LL ;
Damrauer, J ;
Reiser, PJ ;
Swoap, S ;
Guttridge, DC .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 114 (03) :370-378
[2]   Muscle Wasting in Aged, Sarcopenic Rats Is Associated with Enhanced Activity of the Ubiquitin Proteasome Pathway [J].
Altun, Mikael ;
Besche, Henrike C. ;
Overkleeft, Herman S. ;
Piccirillo, Rosanna ;
Edelmann, Mariola J. ;
Kessler, Benedikt M. ;
Goldberg, Alfred L. ;
Ulfhake, Brun .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (51) :39597-39608
[3]   Wasting as independent risk factor for mortality in chronic heart failure [J].
Anker, SD ;
Ponikowski, P ;
Varney, S ;
Chua, TP ;
Clark, AL ;
WebbPeploe, KM ;
Harrington, D ;
Kox, WJ ;
PooleWilson, PA ;
Coats, AJS .
LANCET, 1997, 349 (9058) :1050-1053
[4]  
[Anonymous], J CACHEXIA SARCOPENI
[5]  
Argiles JM, 1999, MED RES REV, V19, P223, DOI 10.1002/(SICI)1098-1128(199905)19:3<223::AID-MED3>3.3.CO
[6]  
2-E
[7]   Cancer cachexia: understanding the molecular basis [J].
Argiles, Josep M. ;
Busquets, Silvia ;
Stemmler, Britta ;
Lopez-Soriano, Francisco J. .
NATURE REVIEWS CANCER, 2014, 14 (11) :754-762
[8]   Muscle protein synthesis in response to nutrition and exercise [J].
Atherton, P. J. ;
Smith, K. .
JOURNAL OF PHYSIOLOGY-LONDON, 2012, 590 (05) :1049-1057
[9]   Altered responses in skeletal muscle protein turnover during aging in anabolic and catabolic periods [J].
Attaix, D ;
Mosoni, L ;
Dardevet, D ;
Combaret, L ;
Mirand, PP ;
Grizard, J .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2005, 37 (10) :1962-1973
[10]   Localized accumulation of oxidative stress causes muscle atrophy through activation of an autophagic pathway [J].
Aucello, Michela ;
Dobrowolny, Gabriella ;
Musaro, Antonio .
AUTOPHAGY, 2009, 5 (04) :527-529