Skeletal muscles, namely, postural muscles, as soleus, suffer from atrophy under disuse. Muscle atrophy development caused by unloading differs from that induced by denervation or other stimuli. Disuse atrophy is supposed to be the result of shift of protein synthesis/proteolysis balance towards protein degradation increase. Maintaining of the balance involves many systems of synthesis and proteolysis, whose activation leads to muscle adaptation to disuse rather than muscle degeneration. Here, we review recent data on activity of signaling systems involved in muscle atrophy development under unloading and muscle adaptation to the lack of support.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3303694PMC
http://dx.doi.org/10.1155/2012/493618DOI Listing

Publication Analysis

Top Keywords

disuse muscle
8
muscle atrophy
8
atrophy development
8
muscle adaptation
8
muscle
6
jobs proteolytic
4
proteolytic enzymes
4
enzymes skeletal
4
skeletal muscle
4
muscle unloading
4

Similar Publications

The purpose of this study was to investigate the ability of mechanotherapy to enhance recovery or prevent loss of muscle size with atrophy, in female rats. Female F344/BN rats were assigned to weight bearing (WB), hindlimb suspended (HS) for 14 days with reambulation for 7 days without (RA) or with (RAM) mechanotherapy (study 1), or to WB, HS for 7 days, with (HSM) or without mechanotherapy (study 2) to gastrocnemius. Muscle fiber cross sectional area (CSA) and type, collagen, satellite cell number, and protein synthesis (K) and degradation (K) were assessed.

View Article and Find Full Text PDF

Challenges in Rehabilitation of a Tetanus Patient With Severe Complications.

Cureus

December 2024

Department of Rehabilitation Medicine, School of Medicine, Showa University, Tokyo, JPN.

Tetanus is a rare but life-threatening neurological disorder caused by neurotoxins produced by . Although mortality rates have significantly decreased with modern intensive care, severe cases remain challenging due to prolonged Intensive Care Unit (ICU) stays, complications, and rehabilitation barriers. We report the case of an 81-year-old male with a history of hypertension and femoral neck fracture who developed severe tetanus following a contaminated forehead laceration.

View Article and Find Full Text PDF

Integrated Proteomic and Metabolomic Analysis of Muscle Atrophy Induced by Hindlimb Unloading.

Biomolecules

December 2024

Department of Aerospace Medical Training, School of Aerospace Medicine, Fourth Military Medical University, Xi'an 710032, China.

Skeletal muscle atrophy, which is induced by factors such as disuse, spaceflight, certain medications, neurological disorders, and malnutrition, is a global health issue that lacks effective treatment. Hindlimb unloading is a commonly used model of muscle atrophy. However, the underlying mechanism of muscle atrophy induced by hindlimb unloading remains unclear, particularly from the perspective of the myocyte proteome and metabolism.

View Article and Find Full Text PDF

Background: Radiotherapy (RT) in head and neck cancer (HNC) can cause multiple side effects such as nausea, pain, taste loss, fatigue, oral mucositis, xerostomia, and acute radiation-associated dysphagia (RAD). These factors threaten patients' oral intake (OI) during this RT. Reduced OI can cause weight loss, dehydration, malnutrition, and various comorbidities.

View Article and Find Full Text PDF

Following anterior cruciate ligament (ACL) injury, quadriceps muscle atrophy persists despite rehabilitation, leading to loss of lower limb strength, osteoarthritis, poor knee joint health and reduced quality of life. However, the molecular mechanisms responsible for these deficits in hypertrophic adaptations within the quadriceps muscle following ACL injury and reconstruction are poorly understood. While resistance exercise training stimulates skeletal muscle hypertrophy, attenuation of these hypertrophic pathways can hinder rehabilitation following ACL injury and reconstruction, and ultimately lead to skeletal muscle atrophy that persists beyond ACL reconstruction, similar to disuse atrophy.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!