During exercise, mechanical loads from the body are transduced into interstitial fluid pressure changes which are sensed as dynamic hydrostatic forces by cells in cartilage. The effects of these loading forces in health and disease are of interest to biologists, but the availability of affordable equipment for in vitro experimentation is an obstacle to research progress. Here, we report the development of a cost-effective hydropneumatic bioreactor system for research in mechanobiology. The bioreactor was assembled from readily available components (a closed-loop stepped motor and pneumatic actuator) and a minimal number of easily-machined crankshaft parts, whilst the cell culture chambers were custom designed by the biologists using CAD and...
The ex vivo engineering of autologous cartilage tissues has the potential to revolutionize the clini...
The need for tissue-engineered constructs as replacement tissue continues to grow as the average age...
Adult human nasal chondrocytes (NCs) have been shown to exhibit a large degree of plasticity and reg...
During exercise, mechanical loads from the body are transduced into interstitial fluid pressure chan...
Mechanical stimuli have been shown to enhance chondrogenesis on both animal and human chondrocytes c...
The Regenerative medicine, or tissue engineering, is a multidisciplinary field involving engineering...
A novel squeeze pressure bioreactor for noncontact hydrodynamic stimulation of cartilage is describe...
Articular cartilage on weight-bearing joints experiences three main forces: fluid-induced shear acro...
Osteoarthritis is a severe socio-economical disease,for which a suitable treatment modality does not...
We report on the development of a bioreactor system for mechanical stimulation of musculoskeletal ti...
Human articular cartilage functions under a wide range of mechanical loads in synovial joints, where...
Any significant in vitro evaluation of cartilage tissue engineering and cartilage repair strategies ...
Because of the limited availability of donor cartilage for resurfacing defects in articular surfaces...
Specific tissues, such as cartilage undergo mechanical solicitation under their normal performance i...
The ex vivo engineering of autologous cartilage tissues has the potential to revolutionize the clini...
The need for tissue-engineered constructs as replacement tissue continues to grow as the average age...
Adult human nasal chondrocytes (NCs) have been shown to exhibit a large degree of plasticity and reg...
During exercise, mechanical loads from the body are transduced into interstitial fluid pressure chan...
Mechanical stimuli have been shown to enhance chondrogenesis on both animal and human chondrocytes c...
The Regenerative medicine, or tissue engineering, is a multidisciplinary field involving engineering...
A novel squeeze pressure bioreactor for noncontact hydrodynamic stimulation of cartilage is describe...
Articular cartilage on weight-bearing joints experiences three main forces: fluid-induced shear acro...
Osteoarthritis is a severe socio-economical disease,for which a suitable treatment modality does not...
We report on the development of a bioreactor system for mechanical stimulation of musculoskeletal ti...
Human articular cartilage functions under a wide range of mechanical loads in synovial joints, where...
Any significant in vitro evaluation of cartilage tissue engineering and cartilage repair strategies ...
Because of the limited availability of donor cartilage for resurfacing defects in articular surfaces...
Specific tissues, such as cartilage undergo mechanical solicitation under their normal performance i...
The ex vivo engineering of autologous cartilage tissues has the potential to revolutionize the clini...
The need for tissue-engineered constructs as replacement tissue continues to grow as the average age...
Adult human nasal chondrocytes (NCs) have been shown to exhibit a large degree of plasticity and reg...