Major challenges in the development of novel implant surfaces for artificial joints include osteoblast heterogeneity and the lack of a simple and sensitive in vitro assay to measure early osteogenic responses. Raman spectroscopy is a label-free, non-invasive and non-destructive vibrational fingerprinting optical technique that is increasingly being applied to detect biochemical changes in cells. In this study Raman spectroscopy has been used to obtain bone cell-specific spectral signatures and to identify any changes therein during osteoblast commitment and differentiation of primary cells in culture. Murine calvarial osteoblasts (COBs) were extracted and cultured and studied by Raman spectroscopy over a 14 day culture period. Distinct oste...
Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and regenerativ...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Raman spectroscopy (RS) is a label-free method based in the inelastic scattering of laser-light and ...
Major challenges in the development of novel implant surfaces for artificial joints include osteobla...
There is an unmet need for the non-invasive characterisation of stem cells to facilitate the transla...
There is an unmet need for the non-invasive characterisation of stem cells to facilitate the transla...
The elucidation of early mineralization of bone is of great interest to the medical world. A clearer...
Raman spectroscopy is a vibrational spectroscopy technique that provides a global biochemical signat...
peer reviewedIn this study, adipose-derived stem cells (ASCs) are used to produce 3D bone grafts. Th...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Tissue engineering and stem cells technology are emerging fields in modern medicine, aiming to prod...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and regenerativ...
<div><p>Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and reg...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and regenerativ...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Raman spectroscopy (RS) is a label-free method based in the inelastic scattering of laser-light and ...
Major challenges in the development of novel implant surfaces for artificial joints include osteobla...
There is an unmet need for the non-invasive characterisation of stem cells to facilitate the transla...
There is an unmet need for the non-invasive characterisation of stem cells to facilitate the transla...
The elucidation of early mineralization of bone is of great interest to the medical world. A clearer...
Raman spectroscopy is a vibrational spectroscopy technique that provides a global biochemical signat...
peer reviewedIn this study, adipose-derived stem cells (ASCs) are used to produce 3D bone grafts. Th...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Tissue engineering and stem cells technology are emerging fields in modern medicine, aiming to prod...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and regenerativ...
<div><p>Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and reg...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Mesenchymal stromal cells (MSCs) hold great potential in skeletal tissue engineering and regenerativ...
Mineralization of bone is achieved by the sequential maturation of the immature amorphous calcium ph...
Raman spectroscopy (RS) is a label-free method based in the inelastic scattering of laser-light and ...