Dynamic mechanical input is believed to play a critical role in the development of functional musculoskeletal tissues. To study this phenomenon, cyclic uniaxial mechanical stretch was applied to engineered ligaments using a custom-built bioreactor and the effects of different stretch frequency, amplitude, and duration were determined. Stretch acutely increased the phosphorylation of p38 (3.5±0.74-fold), S6K1 (3.9±0.19-fold), and ERK1/2 (2.45±0.32-fold). The phosphorylation of ERK1/2 was dependent on time, rather than on frequency or amplitude, within these constructs. ERK1/2 phosphorylation was similar following stretch at frequencies from 0.1 to 1?Hz and amplitudes from 2.5% to 15%, whereas phosphorylation reached maximal levels at 10?min ...
The aim of this study is to investigate the effects of scaffold structure on ligament tissue enginee...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Background: Mechanical stimulation (e.g. slow heavy loading) has proven beneficial ...
Dynamic mechanical input is believed to play a critical role in the development of functional muscul...
Intermittent cyclic stretching and incrementally increasing strain amplitude cyclic stretching were ...
In developing implantable tissues based on cellular remodeling of a fibrin scaffold, a key indicator...
Mechanical loads play a pivotal role in the growth, maintenance, remodeling, and disease onset in co...
Mesenchymal stem cells (MSCs) and fibroblasts are two major seed cells for ligament tissue engineeri...
Musculoskeletal injuries account for more than 70% of time away from sports. One of the reasons for ...
This research was supported by the Undergraduate Research Opportunities Program (UROP)
Background and Objective Mechanical stretching modulates extracellular matrix (ECM) protein synthesi...
Mechanical stimulation applied to damaged soft tissues, such as ligament, can promote tissue remodel...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical loading is recognized to play an important role in regulating the behaviors of cells in b...
Biomechanical stimuli have fundamental roles in the maintenance and remodeling of ligaments includin...
The aim of this study is to investigate the effects of scaffold structure on ligament tissue enginee...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Background: Mechanical stimulation (e.g. slow heavy loading) has proven beneficial ...
Dynamic mechanical input is believed to play a critical role in the development of functional muscul...
Intermittent cyclic stretching and incrementally increasing strain amplitude cyclic stretching were ...
In developing implantable tissues based on cellular remodeling of a fibrin scaffold, a key indicator...
Mechanical loads play a pivotal role in the growth, maintenance, remodeling, and disease onset in co...
Mesenchymal stem cells (MSCs) and fibroblasts are two major seed cells for ligament tissue engineeri...
Musculoskeletal injuries account for more than 70% of time away from sports. One of the reasons for ...
This research was supported by the Undergraduate Research Opportunities Program (UROP)
Background and Objective Mechanical stretching modulates extracellular matrix (ECM) protein synthesi...
Mechanical stimulation applied to damaged soft tissues, such as ligament, can promote tissue remodel...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical loading is recognized to play an important role in regulating the behaviors of cells in b...
Biomechanical stimuli have fundamental roles in the maintenance and remodeling of ligaments includin...
The aim of this study is to investigate the effects of scaffold structure on ligament tissue enginee...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Background: Mechanical stimulation (e.g. slow heavy loading) has proven beneficial ...