The ovine critical-sized defect model provides a robust preclinical model for testing tissue-engineered constructs for use in the treatment of non-union bone fractures and severe trauma. A critical question in cell-based therapies is understanding the optimal therapeutic cell dose. Key to defining the dose and ensuring successful outcomes is understanding the fate of implanted cells, e.g., viability, bio-distribution and exogenous infiltration post-implantation. This study evaluates such parameters in an ovine critical-sized defect model 2 and 7 days post-implantation. The fate of cell dose and behaviour post-implantation when combined with nanomedicine approaches for multi-model tracking and remote control using external magnetic fields is...
Bone repair was addressed in a critical-sized defect model in sheep, combining a ceramic biomaterial...
Background: Therapy with mesenchymal stem cells (MSCs) has been reported to provide beneficial effec...
The use of stem cells to augment the healing of bone defects represents an exciting new frontier in ...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Background: Osteochondral injuries represent a significant clinical problem requiring novel cell-bas...
BACKGROUND: Osteochondral injuries represent a significant clinical problem requiring novel cell-bas...
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 ...
Funder: GlaxoSmithKline (GlaxoSmithKline plc.); doi: https://doi.org/10.13039/100004330Funder: Arthr...
Multipotent Mesenchymal Stem/Stromal Cells (MSCs) are widely used in cellular therapy for joint repa...
In the last decades mesenchymal stromal cells (MSC), intriguing for their multilineage plasticity an...
Many skeletal tissue regenerative strategies centre around the multifunctional properties of bone ma...
The main goal of regenerative medicine is to enhance the innate healing response to more closely mim...
Magnetic stimulation has been applied to bone regeneration, however, the cellular and molecular mech...
Bone repair was addressed in a critical-sized defect model in sheep, combining a ceramic biomaterial...
Background: Therapy with mesenchymal stem cells (MSCs) has been reported to provide beneficial effec...
The use of stem cells to augment the healing of bone defects represents an exciting new frontier in ...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
The ovine critical-sized defect model provides a robust preclinical model for testing tissue-enginee...
Background: Osteochondral injuries represent a significant clinical problem requiring novel cell-bas...
BACKGROUND: Osteochondral injuries represent a significant clinical problem requiring novel cell-bas...
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 ...
Funder: GlaxoSmithKline (GlaxoSmithKline plc.); doi: https://doi.org/10.13039/100004330Funder: Arthr...
Multipotent Mesenchymal Stem/Stromal Cells (MSCs) are widely used in cellular therapy for joint repa...
In the last decades mesenchymal stromal cells (MSC), intriguing for their multilineage plasticity an...
Many skeletal tissue regenerative strategies centre around the multifunctional properties of bone ma...
The main goal of regenerative medicine is to enhance the innate healing response to more closely mim...
Magnetic stimulation has been applied to bone regeneration, however, the cellular and molecular mech...
Bone repair was addressed in a critical-sized defect model in sheep, combining a ceramic biomaterial...
Background: Therapy with mesenchymal stem cells (MSCs) has been reported to provide beneficial effec...
The use of stem cells to augment the healing of bone defects represents an exciting new frontier in ...