Aim: To expand our understanding on the effect of magnetically actuated biomaterials in stem cells, inflammation and fibrous tissue growth. Materials & methods: Magnetic biomaterials were obtained by doping iron oxide particles into starch poly-ϵ-caprolactone (SPCL) to create two formulations, magSPCL-1.8 and 3.6. Stem cell behavior was assessed in vitro and the inflammatory response, subcutaneously in Wistar rats. Results: Metabolic activity and proliferation increased significantly overtime in SPCL and magSPCL-1.8. Electromagnetic fields attenuated the presence of mast cells and macrophages in tissues surrounding SPCL and magSPCL-1.8, between weeks 1 and 9. Macrophage reduction was more pronounced for magSPCL-1.8, which could explain why...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
© 2016 Dr. Javad JafariEngineering adipose tissue for healing defects caused by injury or trauma is ...
Skeletal muscle comprises a large percentage of the human body mass and plays an essential role in l...
Tendon regeneration can be undermined by the formation of fibrous adhesions (scar tissue) between th...
Inflammation is an important process of tendon healing. However, excessive, persistent or unresolved...
The application of magnetic nanoparticles (MNPs) in tissue engineering (TE) approaches opens several...
Tendons are mechanosensitive tissues that connect and transmit the forces generated by muscles to bo...
Novel artificial tissues with potential usefulness in local-based therapies have been generated by t...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
First published: 05 December 2019Tendon tissues connect muscle to bone allowing the transmission of ...
Tendons are powerful 3D biomechanically structures combining a few cells in an intrincated and highl...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompati...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
Purpose: Iron oxide based magnetic nanoparticles (MNP) are versatile tools in biology and medicine. ...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
© 2016 Dr. Javad JafariEngineering adipose tissue for healing defects caused by injury or trauma is ...
Skeletal muscle comprises a large percentage of the human body mass and plays an essential role in l...
Tendon regeneration can be undermined by the formation of fibrous adhesions (scar tissue) between th...
Inflammation is an important process of tendon healing. However, excessive, persistent or unresolved...
The application of magnetic nanoparticles (MNPs) in tissue engineering (TE) approaches opens several...
Tendons are mechanosensitive tissues that connect and transmit the forces generated by muscles to bo...
Novel artificial tissues with potential usefulness in local-based therapies have been generated by t...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
First published: 05 December 2019Tendon tissues connect muscle to bone allowing the transmission of ...
Tendons are powerful 3D biomechanically structures combining a few cells in an intrincated and highl...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompati...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
Purpose: Iron oxide based magnetic nanoparticles (MNP) are versatile tools in biology and medicine. ...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
© 2016 Dr. Javad JafariEngineering adipose tissue for healing defects caused by injury or trauma is ...
Skeletal muscle comprises a large percentage of the human body mass and plays an essential role in l...