In order to get a comprehensive picture of the complex adaptations of human skeletal muscle to disuse and further the understanding of the underlying mechanisms, we participated in two bed rest campaigns, one lasting 35 days and one 24 days. In the first bed rest (BR) campaign, myofibrillar proteins, metabolic enzymes and antioxidant defence systems were found to be down-regulated both post-8 days and post-35 days BR by proteomic analysis of vastus lateralis muscle samples from nine subjects. Such profound alterations occurred early (post-8 days BR), before disuse atrophy developed, and persisted through BR (post-35 days BR). To understand the mechanisms underlying the protein adaptations observed, muscle biopsies from the second bed rest c...
Skeletal muscle tissue demonstrates a remarkable malleability and can adjust its metabolic and contr...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...
In order to get a comprehensive picture of the complex adaptations of human skeletal muscle to disus...
Ten healthy sedentary subjects underwent 35-days bed rest (BR) and needle biopsy samples of the vas...
BackgroundInactivity and unloading induce skeletal muscle atrophy, loss of strength and detrimental ...
Background. Inactivity and unloading induce skeletal muscle atrophy, loss of strength and detrimenta...
IntroductionLong-term head-down bed rest (HDBR) results in musculoskeletal losses similar to those o...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
Following disuse, muscle fibre function goes through adaptations such as a loss of specific force (P...
Following disuse, muscle fibre function goes through adaptations such as a loss of specific force (P...
Little is known about the molecular regulation of skeletal muscle protein turnover during exercise i...
Skeletal muscle tissue demonstrates a remarkable malleability and can adjust its metabolic and contr...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...
In order to get a comprehensive picture of the complex adaptations of human skeletal muscle to disus...
Ten healthy sedentary subjects underwent 35-days bed rest (BR) and needle biopsy samples of the vas...
BackgroundInactivity and unloading induce skeletal muscle atrophy, loss of strength and detrimental ...
Background. Inactivity and unloading induce skeletal muscle atrophy, loss of strength and detrimenta...
IntroductionLong-term head-down bed rest (HDBR) results in musculoskeletal losses similar to those o...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
Following disuse, muscle fibre function goes through adaptations such as a loss of specific force (P...
Following disuse, muscle fibre function goes through adaptations such as a loss of specific force (P...
Little is known about the molecular regulation of skeletal muscle protein turnover during exercise i...
Skeletal muscle tissue demonstrates a remarkable malleability and can adjust its metabolic and contr...
The aim of the study was to evaluate the expression levels of proteins related to mitochondrial biog...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...