Apatite nanocrystals, which mimic the dimensions of natural bone mineral, were electrosprayed on glass substrates, as a suitable synthetic biomedical material for osteoblast outgrowth was explored. A variety of topographic patterns were deposited and the influence of these designs on osteoblast alignment and cell differentiation was investigated. Patterned cell growth and enhanced cell differentiation were seen. Osteoblasts were also cultured on apatite nanocrystals chemically modified with either carbonate or silicon ions. Enhanced cell proliferation and early formation of mineral nodules were observed on apatite nanocrystals with silicon addition. This work highlights the importance of the combined effects of surface topography and surfac...
Bone apatite consists of carbonated calcium-deficient hydroxyapatite (CDHA) nanocrystals. Biomimetic...
Bio-inspired apatite nanoparticles precipitated in the presence of citrate ions at increasing matura...
The natural environment of a living cell is not only organized on a micrometer, but also on a nanome...
The choice of the appropriate material having suitable compositional and morphological surface chara...
Biomimetic modification of hydroxyapatite on a polymer surface is a potent strategy for activating b...
To fight bone diseases characterized by poor bone quality like osteoporosis and osteoarthritis, as w...
Item does not contain fulltextThe current work evaluated the influence of nanoscale surface-topograp...
To fight bone diseases characterized by poor bone quality like osteoporosis and osteoarthritis, as w...
Recent developments in biomineralization have already demonstrated that nanosized particles play an ...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
Osteoimmunomodulation has informed the importance of modulating a favorable osteoimmune environment ...
We have developed precision-engineered strontium eluting nanopatterned surfaces. Nanotopography has ...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
Understanding of cell-substrate interaction will help us to gain insight into differences in cell be...
The chemical, mechanical, and topographical features of the extracellular matrix (ECM) have all been...
Bone apatite consists of carbonated calcium-deficient hydroxyapatite (CDHA) nanocrystals. Biomimetic...
Bio-inspired apatite nanoparticles precipitated in the presence of citrate ions at increasing matura...
The natural environment of a living cell is not only organized on a micrometer, but also on a nanome...
The choice of the appropriate material having suitable compositional and morphological surface chara...
Biomimetic modification of hydroxyapatite on a polymer surface is a potent strategy for activating b...
To fight bone diseases characterized by poor bone quality like osteoporosis and osteoarthritis, as w...
Item does not contain fulltextThe current work evaluated the influence of nanoscale surface-topograp...
To fight bone diseases characterized by poor bone quality like osteoporosis and osteoarthritis, as w...
Recent developments in biomineralization have already demonstrated that nanosized particles play an ...
In terms of biomaterial development and implant technology, the cellular response can be affected by...
Osteoimmunomodulation has informed the importance of modulating a favorable osteoimmune environment ...
We have developed precision-engineered strontium eluting nanopatterned surfaces. Nanotopography has ...
Background: Patterning medical devices at the nanoscale level enables the manipulation of cell behav...
Understanding of cell-substrate interaction will help us to gain insight into differences in cell be...
The chemical, mechanical, and topographical features of the extracellular matrix (ECM) have all been...
Bone apatite consists of carbonated calcium-deficient hydroxyapatite (CDHA) nanocrystals. Biomimetic...
Bio-inspired apatite nanoparticles precipitated in the presence of citrate ions at increasing matura...
The natural environment of a living cell is not only organized on a micrometer, but also on a nanome...