Purpose: Iron oxide based magnetic nanoparticles (MNP) are versatile tools in biology and medicine. Adipose derived mesenchymal stem cells (ADSC) and Wharton Jelly mesenchymal stem cells (WJMSC) are currently tested in different strategies for regenerative regenerative medicine (RM) purposes. Their superiority compared to other mesenchymal stem cell consists in larger availability, and superior proliferative and differentiation potential. Magnetic field (MF) exposure of MNP-loaded ADSC has been proposed as a method to deliver mechanical stimulation for increasing conversion to musculoskeletal lineages. In this study, we investigated comparatively chondrogenic conversion of ADSC-MNP and WJMSC with or without MF exposure in order to identify ...
Chih-Sheng Chiang,1 Jian-Yi Chen,1 Min-Yu Chiang,1 Kai-Ting Hou,1 Wei-Ming Li,1 Shwu-Jen Chang,2 San...
The magnetization of mesenchymal stem cells (MSC) has the potential to aid tissue engineering approa...
Cell monitoring and cell localization can be potentially achieved by the internalization of magneti...
The use of magnetic nanoparticles (MNPs) towards the musculoskeletal tissues has been the focus of m...
Chondrogenic commitments of mesenchymal stem cells (MSCs) require 3D cellular organization. Furtherm...
Abstract Stem cell therapy using mesenchymal stem/stromal cells (MSCs) represents a nove...
International audienceAim: The aim of this work was the development of successful cell therapy techn...
Due to an unmet clinical need of curative treatments for osteoarthritic patients, tissue engineering...
Chondral or osteochondral defects are still controversial problems in orthopedics. Here, chondrocyte...
Abstract Background Mesenchymal stem cells (MSCs) are multipotent stromal cells that have the abilit...
Despite the extensive reports on the potential hazard of magnetic field (MF) exposures on humans, th...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
International audienceRecently, iron oxide nanoparticles (IONPs) have gathered special attention in ...
Pulsed electromagnetic field therapy, or pulsed signal therapy, has shown efficacy in treating many ...
Magnetic nanoparticles (MNPs) are attractive tools to overcome limitations of current regenerative m...
Chih-Sheng Chiang,1 Jian-Yi Chen,1 Min-Yu Chiang,1 Kai-Ting Hou,1 Wei-Ming Li,1 Shwu-Jen Chang,2 San...
The magnetization of mesenchymal stem cells (MSC) has the potential to aid tissue engineering approa...
Cell monitoring and cell localization can be potentially achieved by the internalization of magneti...
The use of magnetic nanoparticles (MNPs) towards the musculoskeletal tissues has been the focus of m...
Chondrogenic commitments of mesenchymal stem cells (MSCs) require 3D cellular organization. Furtherm...
Abstract Stem cell therapy using mesenchymal stem/stromal cells (MSCs) represents a nove...
International audienceAim: The aim of this work was the development of successful cell therapy techn...
Due to an unmet clinical need of curative treatments for osteoarthritic patients, tissue engineering...
Chondral or osteochondral defects are still controversial problems in orthopedics. Here, chondrocyte...
Abstract Background Mesenchymal stem cells (MSCs) are multipotent stromal cells that have the abilit...
Despite the extensive reports on the potential hazard of magnetic field (MF) exposures on humans, th...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
International audienceRecently, iron oxide nanoparticles (IONPs) have gathered special attention in ...
Pulsed electromagnetic field therapy, or pulsed signal therapy, has shown efficacy in treating many ...
Magnetic nanoparticles (MNPs) are attractive tools to overcome limitations of current regenerative m...
Chih-Sheng Chiang,1 Jian-Yi Chen,1 Min-Yu Chiang,1 Kai-Ting Hou,1 Wei-Ming Li,1 Shwu-Jen Chang,2 San...
The magnetization of mesenchymal stem cells (MSC) has the potential to aid tissue engineering approa...
Cell monitoring and cell localization can be potentially achieved by the internalization of magneti...