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1.
China Journal of Orthopaedics and Traumatology ; (12): 374-378, 2022.
Article in Chinese | WPRIM | ID: wpr-928327

ABSTRACT

As an important exercise and energy metabolism organ of the human body, the normal maintenance of skeletal muscle mass is essential for the body to perform normal physiological functions. The autophagy-lysosome (AL) pathway is a physiological or pathological mechanism that is ubiquitous in normal and diseased cells. It plays a key role in the maintaining of protein balance, removing damaged organelles, and the stability of internal environment. The smooth progress of the autophagy process needs to go through multiple steps, which are completed under the coordinated action of multiple factors. Autophagy maintains the muscle homeostasis of a healthy body by removing cell components such as damaged myofibrils and isolated cytoplasmic proteins. Autophagy could also provide the initial energy required for cell proliferation, promote muscle regeneration and remodeling after injury. At the same time, autophagy disorder is also an important cause of age-related skeletal muscle atrophy. Autophagy could affect the response of skeletal muscle to exercise, and increasing the level of basic autophagy is beneficial to improve the adaptive response of skeletal muscle to exercise. This article summarizes the role and pathways of autophagy in the maintenance of skeletal muscle quality, in order to provide effective rehabilitation strategies for clinical prevention and treatment of muscle atrophy.


Subject(s)
Humans , Autophagy/physiology , Exercise/physiology , Muscle, Skeletal/pathology , Muscular Atrophy/pathology , Signal Transduction
2.
Chinese Journal of Traumatology ; (6): 93-98, 2019.
Article in English | WPRIM | ID: wpr-771633

ABSTRACT

The clinical treatment of joint contracture due to immobilization remains difficult. The pathological changes of muscle tissue caused by immobilization-induced joint contracture include disuse skeletal muscle atrophy and skeletal muscle tissue fibrosis. The proteolytic pathways involved in disuse muscle atrophy include the ubiquitin-proteasome-dependent pathway, caspase system pathway, matrix metalloproteinase pathway, Ca-dependent pathway and autophagy-lysosomal pathway. The important biological processes involved in skeletal muscle fibrosis include intermuscular connective tissue thickening caused by transforming growth factor-β1 and an anaerobic environment within the skeletal muscle leading to the induction of hypoxia-inducible factor-1α. This article reviews the progress made in understanding the pathological processes involved in immobilization-induced muscle contracture and the currently available treatments. Understanding the mechanisms involved in immobilization-induced contracture of muscle tissue should facilitate the development of more effective treatment measures for the different mechanisms in the future.


Subject(s)
Humans , Atrophy , Autophagy , Calcium , Metabolism , Caspases , Metabolism , Connective Tissue , Metabolism , Pathology , Contracture , Metabolism , Pathology , Therapeutics , Fibrosis , Immobilization , Joints , Lysosomes , Metabolism , Matrix Metalloproteinases , Metabolism , Muscle, Skeletal , Metabolism , Pathology , Proteasome Endopeptidase Complex , Metabolism , Proteolysis , Signal Transduction , Physiology , Transforming Growth Factor beta1 , Metabolism , Ubiquitin , Metabolism
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