The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is understood to facilitate effective osteogenesis of mesenchymal stem cells (MSCs) in vitro. Mechanotransduction has been integrated into a multitude of in vitro bone tissue engineering strategies and provides an effective means of controlling cell behaviour towards therapeutic outcomes. However, the delivery of mechanical stimuli to exogenous MSC populations, post implantation, poses a significant translational hurdle. Here, we describe an innovative bio-magnetic strategy, MICA, where magnetic nanoparticles (MNPs) are used to remotely deliver mechanical stimuli to the mechano-receptor, TREK-1, resulting in activation and downstream signalling ...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Large bone defects with limited intrinsic regenerative potential represent a major surgical challeng...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
Magnetic stimulation has been applied to bone regeneration, however, the cellular and molecular mech...
Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as w...
Magnetic ion channel activation technology uses superparamagnetic nanoparticles conjugated with targ...
There is a pressing clinical need to develop cell-based bone therapies due to a lack of viable, auto...
The use of magnetic nanoparticles (MNPs) towards the musculoskeletal tissues has been the focus of m...
Repairing bone defects poses a major orthopedic challenge because current treatments are constrained...
There is a pressing clinical need to develop cell-based bone therapies due to a lack of viable, auto...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Large bone defects with limited intrinsic regenerative potential represent a major surgical challeng...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
Magnetic stimulation has been applied to bone regeneration, however, the cellular and molecular mech...
Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as w...
Magnetic ion channel activation technology uses superparamagnetic nanoparticles conjugated with targ...
There is a pressing clinical need to develop cell-based bone therapies due to a lack of viable, auto...
The use of magnetic nanoparticles (MNPs) towards the musculoskeletal tissues has been the focus of m...
Repairing bone defects poses a major orthopedic challenge because current treatments are constrained...
There is a pressing clinical need to develop cell-based bone therapies due to a lack of viable, auto...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Large bone defects with limited intrinsic regenerative potential represent a major surgical challeng...