Mesenchymal stromal cells are present in very low numbers in the bone marrow, necessitating their selective expansion on tissue culture plastic prior to their use in tissue-engineering applications. MSC expansion is laborious, time consuming, unphysiological and not economical, thus calling for automated bioreactor-based strategies. We and others have shown that osteogenic grafts can be cultured in bioreactors by seeding either 2D-expanded cells or by direct seeding of the mononuclear fraction of bone marrow. To further streamline this protocol, we assessed in this study the possibility of seeding the cells onto porous calcium phosphate ceramics directly from unprocessed bone marrow. Using predetermined volumes of bone marrow from multiple ...
In the present thesis, a tissue engineering approach to treat bone defects was investigated. Such st...
We investigated whether the maintenance in culture of endothelial and mesenchymal progenitors from t...
Stromal cells from marrow hold a great promise for bone regeneration. Even if they are already being...
In this work, we investigated whether osteoinductive constructs can be generated by isolation and ex...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...
Tissue engineering of bone by combining mesenchymal stem cells (MSCs) with a suitable ceramic carrie...
Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic dishes (2...
Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic dishes (2...
Critical size bone defects and non-union fractions are still challenging to treat. Cell-loaded bone ...
Critical size bone defects and non-union fractions are still challenging to treat. Cell-loaded bone ...
Critical size bone defects and non-union fractions are still challenging to treat. Cell-loaded bone ...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
<div><p>Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic d...
In the present thesis, a tissue engineering approach to treat bone defects was investigated. Such st...
We investigated whether the maintenance in culture of endothelial and mesenchymal progenitors from t...
Stromal cells from marrow hold a great promise for bone regeneration. Even if they are already being...
In this work, we investigated whether osteoinductive constructs can be generated by isolation and ex...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...
Three-dimensional (3D) culture systems are critical to investigate cell physiology and to engineer t...
Tissue engineering of bone by combining mesenchymal stem cells (MSCs) with a suitable ceramic carrie...
Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic dishes (2...
Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic dishes (2...
Critical size bone defects and non-union fractions are still challenging to treat. Cell-loaded bone ...
Critical size bone defects and non-union fractions are still challenging to treat. Cell-loaded bone ...
Critical size bone defects and non-union fractions are still challenging to treat. Cell-loaded bone ...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
<div><p>Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic d...
In the present thesis, a tissue engineering approach to treat bone defects was investigated. Such st...
We investigated whether the maintenance in culture of endothelial and mesenchymal progenitors from t...
Stromal cells from marrow hold a great promise for bone regeneration. Even if they are already being...